Harmonised techniqueNon-exclusive mapping

Magnetometry and magnetic susceptibility

SQUID/VSM magnetometry, magnetic susceptibility, magnetisation and Curie-Weiss analyses.

71primary papers
156mapped measurements
561linked results
86raw method labels
The harmonised label does not replace the method

Every source method stays verbatim. Subtypes retain distinctions such as ATR versus transmission IR, powder versus single-crystal diffraction, and two- versus four-contact transport.

Measurement-family coverage

The same technique may serve transport, electrochemistry, sensing or another scientific purpose.

Mapped measurements

Filter source method wording, sample context and scientific purpose.

156 measurements

OtherField dependent / hysteresis

Vibrating sample magnetometer M-H curves

2026 · Facile Preparation of Polymorphic Metal–Organic Framework Nanostructures as Microwave Absorbers via One-Pot Hydrothermal Reaction

Cu-TCNQ powder · Powder · Magnetisation measured from -1 to 1 T for M-TCNQ complexes.

SpectroscopySQUID

SQUID magnetic susceptibility

2026 · Tunable Charge Transport Properties Through Precise π-Stacking Modulation in Isostructural Porous Molecular Conductors

PMC-3-Cl single crystals · Single Crystal · Static magnetic susceptibility on polycrystalline PMC-3-Cl and PMC-3-Br from 2-300 K; fit to Curie plus singlet-triplet thermal excitation model.

OtherVSM

PPMS-VSM magnetometry.

2025 · Uninterrupted π-d Conjugated Three-Dimensional Conductive Metal-Organic Framework

As-synthesised Ni3HBC greenish-black nanocrystalline powder · Powder · Temperature-dependent susceptibility from 4 to 300 K under 1.0 kOe; field-dependent magnetization from 2 to 100 K under +/-90 kOe; diamagnetic correction applied.

OtherSQUID

SQUID magnetic susceptibility and ZFC/FC magnetisation

2024 · Aliovalent Substitution Tunes Physical Properties in a Conductive Bis(dithiolene) Two-Dimensional Metal-Organic Framework

Ni3(THT)2 black powder · Powder · Quantum Design MPMS3; powder suspended in eicosane matrix in polycarbonate capsule; chiT from 2-300 K and 50-335 K; ZFC/FC under 1000 Oe

OtherSQUID

AC magnetic susceptibility by SQUID

2024 · Diamagnetic Carrier-Doping-Induced Continuous Electronic and Magnetic Crossover in One-Dimensional Coordination Polymers

all Cu-doping-ratio powders · Powder · Frequency range 1-1500 Hz; zero field; spin relaxation fitted.

OtherSQUID

SQUID DC magnetic susceptibility

2024 · Diamagnetic Carrier-Doping-Induced Continuous Electronic and Magnetic Crossover in One-Dimensional Coordination Polymers

all Cu-doping-ratio powders · Powder · Polycrystalline samples, 2-300 K; Curie-Weiss fitting and chiT values.

OtherField dependent / hysteresis

Field-dependent magnetization M-H

2024 · Diamagnetic Carrier-Doping-Induced Continuous Electronic and Magnetic Crossover in One-Dimensional Coordination Polymers

all Cu-doping-ratio powders · Powder · M-H curves at 2 K in main figure and multiple temperatures in SI.

OtherUnspecified subtype

PPMS magnetization and magnetic susceptibility

2024 · Synthesis and structure of a non-van-der-Waals two-dimensional coordination polymer with superconductivity

Cu3BHT micro-crystal array / multicrystalline film · Thin Film · Quantum Design DynaCool D-209 PPMS; susceptibility under 500 mT from 1.7 to 300 K; magnetization curves under 0-5 T at 2, 3, 5, 8, and 10 K.

OtherUnspecified subtype

Magnetisation and Curie-Weiss analysis

2024 · Two-Dimensional Conjugated Metal–Organic Frameworks with a Ring-in-Ring Topology and High Electrical Conductance

Co-DHHBTN powder · Powder · Quantum Design VSM; ZFC/FC 1.8-300 K under 100 Oe; hysteresis at 2 K and 5 K.

OtherUnspecified subtype

Magnetisation and Curie-Weiss analysis

2024 · Two-Dimensional Conjugated Metal–Organic Frameworks with a Ring-in-Ring Topology and High Electrical Conductance

Cu-DHHBTN powder · Powder · Quantum Design VSM; ZFC/FC 1.8-300 K under 100 Oe; hysteresis at 2 K and 5 K.

OtherUnspecified subtype

Magnetisation and Curie-Weiss analysis

2024 · Two-Dimensional Conjugated Metal–Organic Frameworks with a Ring-in-Ring Topology and High Electrical Conductance

Ni-DHHBTN powder · Powder · Quantum Design VSM; ZFC/FC 1.8-300 K under 100 Oe; hysteresis at 2 K and 5 K.

SpectroscopyUnspecified subtype

EPR and DC magnetic susceptibility

2023 · A Conductive 2D Conjugated Tetrathia[8]circulene-Based Nickel Metal–Organic Framework for Energy Storage

as-synthesised Ni-TTC black powder · Powder · EPR collected at 90 K; magnetic susceptibility in SQUID-VSM at 1000 Oe

OtherSQUID

In situ SQUID magnetic measurements under gases

2023 · CO2-Sensitive Porous Magnet: Antiferromagnet Creation from a Paramagnetic Charge-Transfer Layered Metal-Organic Framework

Activated crystals of compound 1 · Single Crystal · Compound 1 crystals in homemade sealed SQUID gas cell; CO2 pressure 0.1-100 kPa; MPMS-XL, 1.8-300 K, -7 to 7 T.

OtherSQUID

SQUID magnetic measurements under O2

2023 · CO2-Sensitive Porous Magnet: Antiferromagnet Creation from a Paramagnetic Charge-Transfer Layered Metal-Organic Framework

O2-loaded compound 1 magnetic control · Powder · 100 kPa O2 introduced at 200 K; cooled to 90 K at 1 K min-1; equilibrated 6 h; measured 120-1.8 K and M-H at 1.8 K.

OtherSQUIDAC susceptibility

SQUID magnetic susceptibility and AC susceptibility

2023 · Conductive metal-organic frameworks with wheel-shaped metallomacrocycle subunits as high-performance supercapacitor electrodes

MWM-1 (Co/2Ni) powder/crystals · Powder · Quantum Design MPMS 6000; temperature and frequency dependent susceptibility, 0 and 1000 Oe DC fields

SpectroscopySQUID

EPR and SQUID magnetisation

2023 · Near IR Bandgap Semiconducting 2D Conjugated Metal-Organic Framework with Rhombic Lattice and High Mobility

Cu2(OHPTP) bulk powder · Powder · EPR on Bruker 500; SQUID magnetometer with 100 Oe and 1 T options; magnetic moment measured at 15 kOe.

OtherField dependent / hysteresis

M-H loops after field cooling and interface-control M-H loops

2023 · Two-Dimensional Conductive Metal-Organic Framework Reinforced Spinterface in Organic Spin Valves

STO/PcNi-Cu-30C/Co/Au heterostructure · Electrode · STO/PcM-Cu-30C/Co/Au heterostructures; Figure 5d at 50 K; Figure S29 at 10 K after cooling from 300 to 10 K in 5 T.

OtherField dependent / hysteresis

M-H loops after field cooling

2023 · Two-Dimensional Conductive Metal-Organic Framework Reinforced Spinterface in Organic Spin Valves

STO/PcM-Cu-30C/Co/Au heterostructure series (M = Ni, Cu, H2) · Electrode · Three batches each of STO/PcNi-Cu-30C/Co/Au, STO/PcCu-Cu-30C/Co/Au, and STO/PcH2-Cu-30C/Co/Au heterostructures measured at 10 K after 5 T field cooling.

OtherField dependent / hysteresis

M-H loops after field cooling and interface-control M-H loops

2023 · Two-Dimensional Conductive Metal-Organic Framework Reinforced Spinterface in Organic Spin Valves

STO/PcM-Cu-30C/Co/Au heterostructure series (M = Ni, Cu, H2) · Electrode · STO/PcM-Cu-30C/Co/Au heterostructures measured at 10 K after cooling from 300 to 10 K in a 5 T field.

OtherSQUIDVSMField dependent / hysteresis

Magnetic hysteresis M-H loops by SQUID-VSM

2023 · Two-Dimensional Conductive Metal-Organic Framework Reinforced Spinterface in Organic Spin Valves

STO/LSMO/PcNi-Cu-30C/Co/Au organic spin valve · Electrode · M-H loops of LSMO film, Co film, and LSMO/PcNi-Cu-nC MOF/Co heterostructures at 50 K.

OtherSQUIDVSMField dependent / hysteresis

Magnetic hysteresis M-H loops by SQUID-VSM

2023 · Two-Dimensional Conductive Metal-Organic Framework Reinforced Spinterface in Organic Spin Valves

STO/LSMO/PcM-Cu-nC/Co/Au OSV growth-cycle series (M = Ni, Cu, H2; n = 10-40) · Electrode · STO/LSMO/PcNi-Cu-nC/Co/Au heterostructures at 50 K for n = 10, 20, and 40 cycles.

SpectroscopyUnspecified subtype

magnetic susceptibility

2022 · Crystal Structure and Electrochemical and Charge Transfer Properties in Redox-Active Coordination Polymers Based on a Truncated Tetrathiafulvalene Linker

as-synthesised Cd-m-TTFTB red rod-like crystals · Powder · chiMT versus T plots measured in a DC field of 1 kOe; values reported at 300 K.

SpectroscopyUnspecified subtype

DC magnetometry and EPR

2022 · Dimensionality Modulates Electrical Conductivity in Compositionally Constant One-, Two-, and Three-Dimensional Frameworks

Ni-1D rods/bricks · Powder · Magnetic susceptibility under 1 kOe from 1.8-300 K; EPR under nitrogen at about 4.5-5 K.

OtherSQUID

variable-temperature magnetic measurements, Quantum Design SQUID MPMS-XL

2022 · Exploration of Variable Temperature Magnetism and Electrical Properties of a Pyridyl-isonicotinoyl Hydrazone Bridged Three-Dimensional Mn-Metal-Organic Framework with a Thiophene Dicarboxylato Link

polycrystalline/finely ground compound 1 · Powder · 2-300 K; magnetic field 0.3 T from 300 to 2 K and 0.02 T from 30 to 2 K; diamagnetic corrections by Pascal constants

SpectroscopyUnspecified subtype

Raman, UV-vis and ZFC-FC magnetic susceptibility

2022 · Host-guest molecular interaction promoted urea electrosynthesis over a precisely designed conductive metal-organic framework

Co-PMDA-2-mbIM powder · Powder · Raman lambda 532 nm; UV-vis adsorption; magnetic susceptibility under H = 500 Oe.

OtherUnspecified subtype

AC magnetic susceptibility

2022 · Redox-Active Metal-Organic Frameworks with Three-Dimensional Lattice Containing the m-Tetrathiafulvalene-Tetrabenzoate

Dy-m-TTFTB fresh polycrystalline sample · Powder · 2 Oe ac susceptibilities at fixed frequencies 1.0-999 Hz; zero dc field and 1000 Oe dc field; measured for all MOFs, Dy shows frequency-dependent out-of-phase response.

OtherUnspecified subtype

DC magnetic susceptibility modelling

2022 · Redox-Active Metal-Organic Frameworks with Three-Dimensional Lattice Containing the m-Tetrathiafulvalene-Tetrabenzoate

Gd-m-TTFTB polycrystalline/powder sample · Powder · Gd-m-TTFTB chiM T measured in 1000 Oe field; compared with simulations of two isolated Gd ions and Gd2 cluster magnetic coupling.

OtherUnspecified subtype

DC magnetic susceptibility and isothermal magnetisation

2022 · Redox-Active Metal-Organic Frameworks with Three-Dimensional Lattice Containing the m-Tetrathiafulvalene-Tetrabenzoate

Tb-m-TTFTB polycrystalline/powder sample · Powder · Quantum Design SQUID VSM; fresh polycrystalline samples; 2-300 K under 1000 Oe for chiM T; isothermal M-H to 70 kOe at 1.8 K.

OtherSQUID

Magnetic susceptibility and M(H) in MPMS-7T

2022 · Structural, Thermodynamic, and Transport Properties of the Small-Gap Two-Dimensional Metal-Organic Kagomé Materials Cu3(hexaiminobenzene)2and Ni3(hexaiminobenzene)2

Cu3(HIB)2 densified pellet · Pellet · Magnetisation data collected from 2 to 300 K under mu0H = 1 T; M(H) curves at 2 and 300 K.

OtherSQUID

Magnetic susceptibility and M(H) in MPMS-7T

2022 · Structural, Thermodynamic, and Transport Properties of the Small-Gap Two-Dimensional Metal-Organic Kagomé Materials Cu3(hexaiminobenzene)2and Ni3(hexaiminobenzene)2

Ni3(HIB)2 densified pellet · Pellet · Magnetisation data collected from 2 to 300 K under mu0H = 1 T; M(H) curves at 2 and 300 K.

OtherUnspecified subtype

AC magnetic susceptibility

2021 · A family of lanthanide metal-organic frameworks based on a redox-active tetrathiafulvalene-dicarboxylate ligand showing slow relaxation of magnetisation and electronic conductivity

1-Dy · Powder · 1.5 kOe dc field; 10-1399 Hz; Arrhenius fitting of relaxation peaks.

OtherUnspecified subtype

AC magnetic susceptibility

2021 · A family of lanthanide metal-organic frameworks based on a redox-active tetrathiafulvalene-dicarboxylate ligand showing slow relaxation of magnetisation and electronic conductivity

2-Dy · Powder · 1.5 kOe dc field; 10-1399 Hz; Arrhenius fitting of relaxation peaks.

OtherUnspecified subtype

DC magnetic susceptibility and magnetisation

2021 · A family of lanthanide metal-organic frameworks based on a redox-active tetrathiafulvalene-dicarboxylate ligand showing slow relaxation of magnetisation and electronic conductivity

1-Tb · Powder · 2-300 K under 1000 Oe; M vs H at 2 K to 50 kOe.

SpectroscopySQUID

VT-VF SQUID magnetometry

2021 · An Electrically Conducting Three-Dimensional Iron–Catecholate Porous Framework

Fe-HHTP-MOF black microcrystalline powder · Powder · Quantum Design MPMS-3, 2-300 K, applied DC fields 0.01-7 T; susceptibility corrected for core diamagnetism.

OtherUnspecified subtype

magnetic susceptibility

2021 · Electron-Conductive Metal-Organic Framework, Fe(dhbq)(dhbq = 2,5-Dihydroxy-1,4-benzoquinone): Coexistence of Microporosity and Solid-State Redox Activity

Anhydrous Fe(dhbq) powder · Powder · Curie-Weiss fits above 50 K for Fe(dhbq)(H2O)2 and Fe(dhbq)

OtherField dependent / hysteresis

field-dependent magnetisation

2021 · Lanthanide-Hypophosphite Frameworks with Guanidinium Guest Showing High Proton Conductivity

complex 1 colourless crystals / polycrystalline powder · Powder · M-H measured between 0 and 7 T at low temperatures

OtherVSM

Magnetometry with Quantum Design Dynacool D-209 PPMS/VSM; PHI fitting

2021 · Redox Ladder of Ni3 Complexes with Closed-Shell, Mono-, and Diradical Triphenylene Units: Molecular Models for Conductive 2D MOFs

complex 2 dark blue needle-shaped crystals · Single Crystal · Microcrystalline powders restrained in eicosane inside sealed NMR tubes; susceptibility at 1.0 kOe from 1.8-295 K; magnetisation at 1.8 K over +/-90 kOe; diamagnetic corrections applied.

OtherUnspecified subtype

Variable-temperature-variable-field magnetization (VTVH)

2021 · Redox Ladder of Ni3 Complexes with Closed-Shell, Mono-, and Diradical Triphenylene Units: Molecular Models for Conductive 2D MOFs

complex 1 dark green ribbon-shaped crystals · Single Crystal · Complex 1 measured from 1.8-10 K under constant magnetic fields of 10, 20, 30, 40, 50, 60 and 70 kOe; fit to S = 3 Hamiltonian.

OtherSQUIDVSMField dependent / hysteresis

Magnetic hysteresis loop measurement (SQUID-VSM)

2020 · 2D Semiconducting Metal–Organic Framework Thin Films for Organic Spin Valves

LSMO/Cu3(HHTP)2(100 nm)/Co/Au organic spin valve · Electrode · M-H curves compared for LSMO/2D c-MOF/Co device and individual LSMO electrode at 10 K; Cu3(HHTP)2 film measured at 100 K.

SpectroscopySQUID

EPR spectroscopy and SQUID magnetometry

2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design

purified Ni-ett powder · Powder · First-derivative EPR spectra at 77 K; SQUID M-T curves and M-H hysteresis at 2 K.

OtherSQUID

SQUID magnetometry using MPMS 5

2020 · Magnetic and electrical behaviors of the homo-and heterometallic 1d and 3d coordination polymers based on the partial decomposition of the [cr(C2o4)3]3− building block

Compound 1 yellow crystals / polycrystalline pressed pellet · Pellet · compound 1 polycrystalline powder; 2-300 K; fields up to 5 T; M(T), ZFC/FC and M(H) measurements

OtherSQUID

SQUID magnetometry using MPMS 5

2020 · Magnetic and electrical behaviors of the homo-and heterometallic 1d and 3d coordination polymers based on the partial decomposition of the [cr(C2o4)3]3− building block

Compound 2 green prismatic crystals / polycrystalline pressed pellet · Pellet · compound 2 polycrystalline powder; 2-300 K; fields up to 5 T; M(T), ZFC/FC and M(H) measurements

OtherSQUID

SQUID magnetometry using MPMS 5

2020 · Magnetic and electrical behaviors of the homo-and heterometallic 1d and 3d coordination polymers based on the partial decomposition of the [cr(C2o4)3]3− building block

Compound 3 dark green prismatic crystals / polycrystalline pressed pellet · Pellet · compound 3 polycrystalline powder; 2-300 K; fields up to 5 T; M(T), ZFC/FC and M(H) measurements

OtherSQUID

SQUID magnetic susceptibility

2020 · Nanorods of a novel highly conductive 2D metal-organic framework based on perthiolated coronene for thermoelectric conversion

Ni-PTC nanorod dark powder · Powder · Commercial Quantum Design MPMS-XL5 SQUID magnetometer; 300 to 2.5 K at 1 kOe; diamagnetic contribution subtracted by Pascal constants.

OtherSQUIDVSM

VSM-SQUID magnetometry.

2020 · Phosphonate Metal–Organic Frameworks: A Novel Family of Semiconductors

Hand-picked TUB75 crystals · Single Crystal · 2.57 mg hand-picked TUB75 crystals, equivalent to 6.06 umol Cu ions; magnetic fields 50 mT to 7 T; temperatures 2 K to 380 K; diamagnetic background measured with empty capsule at 1 T and 5 T.

OtherVSM

PPMS-VSM magnetic susceptibility

2020 · Spin crossover in Fe(triazole)-Pt nanoparticle self-assembly structured at the sub-5 nm scale

FeL3 coordination polymer, gel state · Unknown · Magnetic moment measured at constant 1.5 T while varying temperature at 1 K min^-1; gel samples kept at or below 300 K where applicable.

OtherUnspecified subtype

Magnetic susceptibility

2020 · Spin crossover in Fe(triazole)-Pt nanoparticle self-assembly structured at the sub-5 nm scale

FeL3 coordination polymer, dry powder state · Powder · Dry powder-state FeL3 magnetic measurement; normalised per mole Fe.

OtherVSM

PPMS-VSM magnetic susceptibility

2020 · Spin crossover in Fe(triazole)-Pt nanoparticle self-assembly structured at the sub-5 nm scale

PtNPs-FeL3 self-assembly, gel state · Unknown · Magnetic moment measured at 1.5 T while varying temperature at 1 K min^-1; gel-state sample not heated above 300 K.

OtherUnspecified subtype

Magnetic susceptibility and XAS

2020 · Spin crossover in Fe(triazole)-Pt nanoparticle self-assembly structured at the sub-5 nm scale

PtNPs-FeL3 self-assembly, dry powder state · Powder · Dry powder-state PtNPs-FeL3 self-assembly checked by magnetic measurement and XAS.

OtherSQUID

SQUID magnetometry

2019 · A semiconducting layered metal-organic framework magnet

as-synthesised K3Fe2[PcFe-O8] dark black powder · Powder · M-H curves measured at 5, 10, 20, 50, 100, 300 and 350 K; ZFC/FC at 100 Oe.

OtherSQUID

SQUID magnetometry

2019 · Influence of Axial Linkers on Polymerization in Paddle-Wheel Cu(II) Coordination Polymers for the Application of Optoelectronics Devices

compound 1 blue needle-shaped crystals · Single Crystal · Applied field 0.5 T; temperature range 5-300 K; diamagnetic correction using Pascal constants.

OtherSQUID

SQUID magnetometry

2019 · Influence of Axial Linkers on Polymerization in Paddle-Wheel Cu(II) Coordination Polymers for the Application of Optoelectronics Devices

compound 2 blue block-shaped crystals · Single Crystal · Applied field 0.5 T; temperature range 5-300 K; diamagnetic correction using Pascal constants.

OtherSQUID

SQUID magnetic susceptibility and magnetisation

2019 · Multifunctional coordination polymers based on copper with modified nucleobases, easily modulated in size and conductivity

CP1 polycrystalline/powder sample · Powder · 2-300 K susceptibility at 0.5 T on 9.440 mg polycrystalline CP1; isothermal magnetisation -5 to 5 T at 2 K.

OtherUnspecified subtype

DC magnetic susceptibility

2019 · Triphenylene-Bridged Trinuclear Complexes of Cu: Models for Spin Interactions in Two-Dimensional Electrically Conductive Metal-Organic Frameworks

microcrystalline sample of complex 1 · Powder · Quantum Design Dynacool PPMS; H = 2.5 kOe; 1.8-300 K; diamagnetic correction and PHI fits to HDVV Hamiltonian.

OtherUnspecified subtype

DC magnetic susceptibility

2019 · Triphenylene-Bridged Trinuclear Complexes of Cu: Models for Spin Interactions in Two-Dimensional Electrically Conductive Metal-Organic Frameworks

microcrystalline sample of complex 2 · Powder · Quantum Design Dynacool PPMS; H = 2.5 kOe; 1.8-300 K; diamagnetic correction and PHI fits to HDVV Hamiltonian.

OtherField dependent / hysteresis

field-dependent magnetisation

2019 · Triphenylene-Bridged Trinuclear Complexes of Cu: Models for Spin Interactions in Two-Dimensional Electrically Conductive Metal-Organic Frameworks

microcrystalline sample of complex 1 · Powder · PPMS magnetisation at 1.8 K in field range +/-90 kOe.

OtherField dependent / hysteresis

field-dependent magnetisation

2019 · Triphenylene-Bridged Trinuclear Complexes of Cu: Models for Spin Interactions in Two-Dimensional Electrically Conductive Metal-Organic Frameworks

microcrystalline sample of complex 2 · Powder · PPMS magnetisation at 1.8 K in field range +/-90 kOe.

OtherSQUID

SQUID remanent magnetisation controls

2018 · A coronene-based semiconducting two-dimensional metal-organic framework with ferromagnetic behavior

PTC-Fe powder magnetic sample · Powder · Remanent magnetisation compared for PTC-Fe, PTC ligand and coronene; cooled from 350 K to 5 K in 1000 Oe before zero-field measurement.

OtherSQUIDVSM

SQUID-VSM magnetisation versus field

2018 · A coronene-based semiconducting two-dimensional metal-organic framework with ferromagnetic behavior

PTC-Fe powder magnetic sample · Powder · M(H) measured at 5, 10, 20, 25 and 50 K.

OtherSQUIDVSM

SQUID-VSM ZFC/FC magnetisation

2018 · A coronene-based semiconducting two-dimensional metal-organic framework with ferromagnetic behavior

PTC-Fe powder magnetic sample · Powder · Temperature-dependent magnetisation measured in 100 Oe field under zero-field-cooled and field-cooled conditions.

SpectroscopySQUIDField dependent / hysteresis

SQUID magnetic susceptibility and hysteresis

2018 · Electron delocalization and charge mobility as a function of reduction in a metal-organic framework

Activated Fe2(BDP)3 bulk powder · Powder · 2-300 K under 0.1 T, 1 T and 7 T; hysteresis sweep rate 0.27 mT s-1.

OtherSQUIDVSM

DC magnetic susceptibility using SQUID-VSM

2018 · Highly Conducting Neutral Coordination Polymer with Infinite Two-Dimensional Silver-Sulfur Networks

Ag-BHT sample, form not specified · Unknown · Measured under 1 T applied field; diamagnetic corrections using Pascal constants.

OtherSQUID

SQUID magnetometry, Quantum Design MPMS

2018 · Nanopore-induced host-guest charge transfer phenomena in a metal-organic framework

Compound 1 Mn-MOF 5TTF crystals · Single Crystal · DC magnetisation at 1000 Oe from 2-300 K; Curie-Weiss fitting from 50-300 K.

OtherSQUID

SQUID magnetometry, Quantum Design MPMS

2018 · Nanopore-induced host-guest charge transfer phenomena in a metal-organic framework

Compound 2 Mn-MOF 7TMPDA crystals · Single Crystal · DC magnetisation at 1000 Oe from 2-300 K; Curie-Weiss fitting from 50-300 K.

OtherSQUID

SQUID magnetometry, Quantum Design MPMS

2018 · Nanopore-induced host-guest charge transfer phenomena in a metal-organic framework

As-prepared Mn-MOF crystals · Single Crystal · DC magnetisation at 1000 Oe from 2-300 K; Curie-Weiss fitting from 50-300 K.

OtherUnspecified subtype

ac magnetic susceptibility

2017 · 2D Conductive Iron-Quinoid Magnets Ordering up to Tc = 105 K via Heterogenous Redox Chemistry

compound 1a desolvated activated framework · Powder · Variable-temperature ac susceptibility for 1a; SI Figure S9

OtherUnspecified subtype

ac magnetic susceptibility

2017 · 2D Conductive Iron-Quinoid Magnets Ordering up to Tc = 105 K via Heterogenous Redox Chemistry

compound 2 black crystals · Single Crystal · Zero applied dc field; ac field 4 Oe; selected frequencies from 1 to 1488 Hz

OtherField dependent / hysteresis

variable-field magnetization hysteresis

2017 · 2D Conductive Iron-Quinoid Magnets Ordering up to Tc = 105 K via Heterogenous Redox Chemistry

compound 2 black crystals · Single Crystal · Hysteresis loops at selected temperatures; field sweep rates reported for 1.8, 10, 60, 90, and 100 K

OtherSQUIDField dependent / hysteresis

SQUID magnetic susceptibility and M-H measurements

2017 · Fluorescent metal-organic frameworks for selective sensing of toxic cations (Tl3+, Hg2+) and highly oxidizing anions ((CrO4)2−, (Cr2O7)2−, (MnO4)−)

compound I yellow platelike crystals · Single Crystal · Magnetic behaviour measured from 300-2 K; room-temperature susceptibility at 1000 Oe; Curie-Weiss fit over 50-300 K.

OtherSQUIDAC susceptibility

SQUID magnetometry, DC and AC susceptibility

2017 · Nanosheets of Two-Dimensional Magnetic and Conducting Fe(II)/Fe(III) Mixed-Valence Metal-Organic Frameworks

compound 1 black shiny microcrystalline solid · Powder · DC susceptibility 2-300 K at 0.1 T; AC susceptibility 1.8-5 K, 0.395 mT, 1-1000 Hz; hysteresis at 1.8 K from -5 to 5 T.

OtherSQUIDAC susceptibility

SQUID magnetometry, DC and AC susceptibility

2017 · Nanosheets of Two-Dimensional Magnetic and Conducting Fe(II)/Fe(III) Mixed-Valence Metal-Organic Frameworks

compound 2 black shiny microcrystalline solid · Powder · DC susceptibility 2-300 K at 0.1 T; AC susceptibility 1.8-5 K, 0.395 mT, 1-1000 Hz; hysteresis at 1.8 K from -5 to 5 T.

OtherSQUIDField dependent / hysteresis

SQUID dc/ac magnetic susceptibility and hysteresis

2015 · Electronic Conductivity, Ferrimagnetic Ordering, and Reductive Insertion Mediated by Organic Mixed-Valence in a Ferric Semiquinoid Metal-Organic Framework

Microcrystalline/crystalline powder of 1 · Powder · Samples in quartz tubes with eicosane; dc susceptibility 2-300 K at 0.1, 0.5 and 1 T; hysteresis sweep rate 2 mT/s.

OtherSQUID

SQUID magnetometry

2013 · Crystal structure and carrier transport properties of a new semiconducting 2D coordination polymer with a 3,5-dimethylpiperidine dithiocarbamate ligand

Polycrystalline sample of 1 · Powder · Magnetic susceptibility measured at 10 kOe from 2 to 300 K.

OtherSQUID

Variable-temperature magnetic susceptibility by SQUID magnetometry

2013 · Electrical bistability around room temperature in an unprecedented one-dimensional coordination magnetic polymer

Polycrystalline compound 1 sample · Powder · Polycrystalline compound 1, 59.95 mg, measured from 2 to 300 K under 0.1 T on Quantum Design MPMS-XL-5 SQUID; diamagnetic correction from Pascal constants.

OtherSQUID

SQUID magnetic susceptibility

2012 · Porous, conductive metal-triazolates and their structural elucidation by the charge-flipping method

MET-2 (Mn) microcrystalline powder · Powder · Quantum Design MPMS; 4.6 mg MET-2 in diamagnetic polycarbonate capsule; 1 kOe field; 5-300 K, cooling then warming.

OtherUnspecified subtype

PPMS high-field magnetisation and Arrott plot analysis

2012 · Stable organic radical stacked by in situ coordination to rare earth cations in MOF materials

Dy-RPF8 powder for variable-field magnetisation · Powder · Dy-RPF8 magnetisation versus field at several temperatures down to 2.5 K and up to 85 kOe; SI Arrott plots shown for Dy-RPF8.

OtherSQUID

SQUID magnetic susceptibility and magnetisation

2012 · Stable organic radical stacked by in situ coordination to rare earth cations in MOF materials

La-RPF8 bulk powder/crystals · Powder · Powder in diamagnetic polycarbonate capsule; susceptibility measured from 2 to 300 K in 10 kOe; field dependence measured at 10 K up to 50 kOe.

OtherSQUID

SQUID magnetic susceptibility and magnetisation of RPF8 series

2012 · Stable organic radical stacked by in situ coordination to rare earth cations in MOF materials

Pr-, Nd-, Sm-, Eu-, Gd-, Tb-, Dy-, Ho- and Er-RPF8 bulk powders · Powder · Susceptibility from 2 to 300 K at 10 kOe; M(H) at 10 K up to 50 kOe; PPMS M(H) down to 2.5 K and up to 85 kOe for Ho/Dy.

SpectroscopyUnspecified subtype

Magnetic susceptibility / magnetic moment

2012 · Synthesis, characterization and solid state electrical properties of 1-D coordination polymer of the type [CuxNi1-x(dadb) ·yH2O]n

Complex 4 powder / pressed pellet · Powder · Powder magnetic susceptibility measured at room temperature on a Cahn-Faraday electrobalance using [Co(NCS)4Hg] reference; magnetic moments calculated from susceptibility.

OtherSQUID

solid-state magnetic susceptibility, SQUID magnetometer

2011 · CH⋯Cl relevant discrepancy on structure, magnetic and electronic conductivity of two mixed-valence CuICuII coordination polymers

As-isolated bulk crystals of compound 1 · Powder · Polycrystalline sample measured on Quantum Design MPMS-XL5 over 2-300 K; susceptibility per Cu(II) unit.

OtherSQUID

solid-state magnetic susceptibility, SQUID magnetometer

2011 · CH⋯Cl relevant discrepancy on structure, magnetic and electronic conductivity of two mixed-valence CuICuII coordination polymers

As-isolated bulk crystals of compound 2 · Powder · Polycrystalline sample measured on Quantum Design MPMS-XL5 over 2-300 K; susceptibility per Cu(II) unit.

SpectroscopyUnspecified subtype

Diffuse reflectance spectra and Gouy magnetic susceptibility

2010 · Synthesis, characterization, electrical conductivity, and catalytic studies of some coordination polymers of salen-type schiff base

[Cd(BNESAP)]n compressed pellet · Pellet · Reflectance spectra recorded from 1350-350 nm on solid complexes diluted with MgO; magnetic susceptibility by Gouy method at room temperature.

SpectroscopyUnspecified subtype

Diffuse reflectance spectra and Gouy magnetic susceptibility

2010 · Synthesis, characterization, electrical conductivity, and catalytic studies of some coordination polymers of salen-type schiff base

[Co(BNESAP)(H2O)2]n compressed pellet · Pellet · Reflectance spectra recorded from 1350-350 nm on solid complexes diluted with MgO; magnetic susceptibility by Gouy method at room temperature.

SpectroscopyUnspecified subtype

Diffuse reflectance spectra and Gouy magnetic susceptibility

2010 · Synthesis, characterization, electrical conductivity, and catalytic studies of some coordination polymers of salen-type schiff base

[Cu(BNESAP)]n compressed pellet · Pellet · Reflectance spectra recorded from 1350-350 nm on solid complexes diluted with MgO; magnetic susceptibility by Gouy method at room temperature.

SpectroscopyUnspecified subtype

Diffuse reflectance spectra and Gouy magnetic susceptibility

2010 · Synthesis, characterization, electrical conductivity, and catalytic studies of some coordination polymers of salen-type schiff base

[Fe(BNESAP)(H2O)2]n compressed pellet · Pellet · Reflectance spectra recorded from 1350-350 nm on solid complexes diluted with MgO; magnetic susceptibility by Gouy method at room temperature.

SpectroscopyUnspecified subtype

Diffuse reflectance spectra and Gouy magnetic susceptibility

2010 · Synthesis, characterization, electrical conductivity, and catalytic studies of some coordination polymers of salen-type schiff base

[Mn(BNESAP)(H2O)2]n compressed pellet · Pellet · Reflectance spectra recorded from 1350-350 nm on solid complexes diluted with MgO; magnetic susceptibility by Gouy method at room temperature.

SpectroscopyUnspecified subtype

Diffuse reflectance spectra and Gouy magnetic susceptibility

2010 · Synthesis, characterization, electrical conductivity, and catalytic studies of some coordination polymers of salen-type schiff base

[Ni(BNESAP)(H2O)2]n compressed pellet · Pellet · Reflectance spectra recorded from 1350-350 nm on solid complexes diluted with MgO; magnetic susceptibility by Gouy method at room temperature.

SpectroscopyUnspecified subtype

Diffuse reflectance spectra and Gouy magnetic susceptibility

2010 · Synthesis, characterization, electrical conductivity, and catalytic studies of some coordination polymers of salen-type schiff base

[Zn(BNESAP)]n compressed pellet · Pellet · Reflectance spectra recorded from 1350-350 nm on solid complexes diluted with MgO; magnetic susceptibility by Gouy method at room temperature.

SpectroscopyUnspecified subtype

UV-vis absorption in DMF and room-temperature magnetic susceptibility

2009 · 1-Hydroxybenzotriazole (HOBt) acidity, formation constant with different metals and thermodynamic parameters: Synthesis and characterization of some HOBt metal complexes - Crystal structures of two polymers: [Cu2(H2O)5(OBt)2(μ-OBt)2] · 2H2O · EtOH (1A) and [Cu(μ-OBt)(HOBt)(OBt)(EtOH)] (1B)

[Co(OBt)2(HOBt)2(H2O)2] pressed tablet · Pellet · Supplementary Table IV reports lambda_max values and effective magnetic moment where applicable.

SpectroscopyUnspecified subtype

UV-vis absorption in DMF and room-temperature magnetic susceptibility

2009 · 1-Hydroxybenzotriazole (HOBt) acidity, formation constant with different metals and thermodynamic parameters: Synthesis and characterization of some HOBt metal complexes - Crystal structures of two polymers: [Cu2(H2O)5(OBt)2(μ-OBt)2] · 2H2O · EtOH (1A) and [Cu(μ-OBt)(HOBt)(OBt)(EtOH)] (1B)

[Cu(gly)2] . H2O blue control · Powder · Supplementary Table IV reports lambda_max values and effective magnetic moment where applicable.

SpectroscopyUnspecified subtype

UV-vis absorption in DMF and room-temperature magnetic susceptibility

2009 · 1-Hydroxybenzotriazole (HOBt) acidity, formation constant with different metals and thermodynamic parameters: Synthesis and characterization of some HOBt metal complexes - Crystal structures of two polymers: [Cu2(H2O)5(OBt)2(μ-OBt)2] · 2H2O · EtOH (1A) and [Cu(μ-OBt)(HOBt)(OBt)(EtOH)] (1B)

[Cu(gly)(OBt)(H2O)] sea-green solid · Powder · Supplementary Table IV reports lambda_max values and effective magnetic moment where applicable.

SpectroscopyUnspecified subtype

UV-vis absorption in DMF and room-temperature magnetic susceptibility

2009 · 1-Hydroxybenzotriazole (HOBt) acidity, formation constant with different metals and thermodynamic parameters: Synthesis and characterization of some HOBt metal complexes - Crystal structures of two polymers: [Cu2(H2O)5(OBt)2(μ-OBt)2] · 2H2O · EtOH (1A) and [Cu(μ-OBt)(HOBt)(OBt)(EtOH)] (1B)

[Cu(OBt)2(H2O)2] pressed tablet · Pellet · Supplementary Table IV reports lambda_max values and effective magnetic moment where applicable.

SpectroscopyUnspecified subtype

UV-vis absorption in DMF and room-temperature magnetic susceptibility

2009 · 1-Hydroxybenzotriazole (HOBt) acidity, formation constant with different metals and thermodynamic parameters: Synthesis and characterization of some HOBt metal complexes - Crystal structures of two polymers: [Cu2(H2O)5(OBt)2(μ-OBt)2] · 2H2O · EtOH (1A) and [Cu(μ-OBt)(HOBt)(OBt)(EtOH)] (1B)

[Cu(OBt)(H2O)2(Cl)] brown solid · Powder · Supplementary Table IV reports lambda_max values and effective magnetic moment where applicable.

SpectroscopyUnspecified subtype

UV-vis absorption in DMF and room-temperature magnetic susceptibility

2009 · 1-Hydroxybenzotriazole (HOBt) acidity, formation constant with different metals and thermodynamic parameters: Synthesis and characterization of some HOBt metal complexes - Crystal structures of two polymers: [Cu2(H2O)5(OBt)2(μ-OBt)2] · 2H2O · EtOH (1A) and [Cu(μ-OBt)(HOBt)(OBt)(EtOH)] (1B)

HOBt solid control · Powder · Supplementary Table IV reports lambda_max values and effective magnetic moment where applicable.

SpectroscopyUnspecified subtype

UV-vis absorption in DMF and room-temperature magnetic susceptibility

2009 · 1-Hydroxybenzotriazole (HOBt) acidity, formation constant with different metals and thermodynamic parameters: Synthesis and characterization of some HOBt metal complexes - Crystal structures of two polymers: [Cu2(H2O)5(OBt)2(μ-OBt)2] · 2H2O · EtOH (1A) and [Cu(μ-OBt)(HOBt)(OBt)(EtOH)] (1B)

[Ni(OBt)(Cl)(H2O)2] pressed tablet · Pellet · Supplementary Table IV reports lambda_max values and effective magnetic moment where applicable.

OtherSQUID

SQUID magnetic susceptibility

2009 · Semiconducting neutral microstructures fabricated by coordinative self-assembly of intramolecular charge-transfer tetrathiafulvalene derivatives

TTF-Pb coordination-polymer microwires · Powder · Magnetic susceptibility measured using Quantum Design SQUID MPMS-XL from 5 to 300 K under 1000 Oe; data corrected for sample holder and diamagnetic contribution.

OtherSQUID

SQUID magnetic susceptibility

2009 · Semiconducting neutral microstructures fabricated by coordinative self-assembly of intramolecular charge-transfer tetrathiafulvalene derivatives

compressed pellet of TTF-Zn spherical particles · Pellet · Magnetic susceptibility of Zn-linked spherical particles measured from 5 to 300 K under 1000 Oe.

OtherAC susceptibility

A.c. magnetic susceptibility

2000 · Coexistence of ferromagnetism and metallic conductivity in a molecule-based layered compound

Thin shiny brown plate-like single crystals of [BEDT-TTF]3[MnCr(C2O4)3] · Single Crystal · In-phase and out-of-phase components measured at 110 Hz over approximately 2-8 K.

OtherUnspecified subtype

Isothermal magnetisation versus magnetic field

2000 · Coexistence of ferromagnetism and metallic conductivity in a molecule-based layered compound

Thin shiny brown plate-like single crystals of [BEDT-TTF]3[MnCr(C2O4)3] · Single Crystal · Field-dependent magnetisation measured at 2 K; hysteresis and saturation reported.

Raw method vocabulary

These are the exact source-preserving method strings consolidated by this technique group.

Show 86 reported method labels
Raw method labelMapped measurements
UV-vis absorption in DMF and room-temperature magnetic susceptibility7
Elemental analysis, IR (KBr), UV-visible (Nujol), magnetic susceptibility, decomposition point7
Diffuse reflectance spectra and Gouy magnetic susceptibility7
Variable-temperature SQUID magnetic susceptibility; Cukiernik model fit6
SQUID magnetic susceptibility5
IR spectroscopy, diffuse reflectance spectroscopy, and magnetic susceptibility4
SQUID magnetometry4
DC susceptibility, Curie-Weiss fitting and magnetisation4
field-dependent magnetisation3
DC variable-temperature magnetic susceptibility3
temperature-dependent magnetic susceptibility and Curie-Weiss fitting3
AC magnetic susceptibility3
SQUID magnetometry using MPMS 53
DC magnetic susceptibility and isothermal magnetisation3
SQUID magnetometry, Quantum Design MPMS3
Magnetic susceptibility measurement using MPMS-5S SQUID magnetometer3
dc magnetic susceptibility, chiMT versus temperature3
Magnetisation and Curie-Weiss analysis3
Magnetic susceptibility, Quantum Design PPMS DynaCool VSM2
ac magnetic susceptibility2
magnetic susceptibility2
DC magnetic susceptibility2
Vibrating sample magnetometer magnetisation measurement2
Magnetic susceptibility and M(H) in MPMS-7T2
Temperature-dependent magnetic susceptibility using Quantum Design PPMS model 6000 magnetometer2
AC susceptibility frequency scans and Cole-Cole analysis2
SQUID magnetometry, DC and AC susceptibility2
M-H loops after field cooling and interface-control M-H loops2
Magnetic hysteresis M-H loops by SQUID-VSM2
solid-state magnetic susceptibility, SQUID magnetometer2
SQUID magnetic susceptibility and magnetisation2
PPMS-VSM magnetic susceptibility2
A.c. magnetic susceptibility1
Isothermal magnetisation versus magnetic field1
SQUID magnetic susceptibility and hysteresis1
SQUID remanent magnetisation controls1
SQUID-VSM magnetisation versus field1
SQUID-VSM ZFC/FC magnetisation1
M-H and chi-T magnetic measurements using MPMS XL SQUID1
PPMS-VSM magnetometry.1
EPR and DC magnetic susceptibility1
dc magnetic susceptibility and field-cooled magnetization1
variable-field magnetization hysteresis1
SQUID magnetic susceptibility and ZFC/FC magnetisation1
PPMS magnetization and magnetic susceptibility1
Magnetic hysteresis loop measurement (SQUID-VSM)1
EPR and SQUID magnetisation1
SQUID magnetic susceptibility and M-H measurements1
SQUID dc/ac magnetic susceptibility and hysteresis1
Magnetic susceptibility using a Quantum Design MPMS-XL SQUID magnetometer1
Variable-temperature magnetism and Curie-Weiss fitting1
variable-temperature magnetic measurements, Quantum Design SQUID MPMS-XL1
Magnetometry with Quantum Design Dynacool D-209 PPMS/VSM; PHI fitting1
Variable-temperature-variable-field magnetization (VTVH)1
DC magnetic susceptibility and magnetisation1
Variable-temperature magnetic susceptibility by Quantum Design MPMS-XL SQUID1
Variable-temperature magnetic susceptibility fitted to Bleaney-Bowers S = 1/2 dimer model1
Magnetic susceptibility / magnetic moment1
DC magnetometry and EPR1
X-band EPR and SQUID magnetic susceptibility1
VSM-SQUID magnetometry.1
DC magnetic susceptibility modelling1
SQUID-based vibrating sample magnetometer, MPMS by Quantum Design, direct-current mode1
Vibrating sample magnetometer M-H curves1
M-H loops after field cooling1
EPR spectroscopy and SQUID magnetometry1
Isothermal magnetisation by SQUID magnetometry1
Variable-temperature magnetic susceptibility by SQUID magnetometry1
PPMS high-field magnetisation and Arrott plot analysis1
SQUID magnetic susceptibility and magnetisation of RPF8 series1
AC magnetic susceptibility by SQUID1
SQUID DC magnetic susceptibility1
Field-dependent magnetization M-H1
magnetic susceptibility using Quantum Design MPMS-XL7 SQUID1
DC magnetic susceptibility using SQUID-VSM1
Magnetic susceptibility and solid-state electronic absorption spectroscopy1
Magnetic susceptibility1
Magnetic susceptibility and XAS1
In situ SQUID magnetic measurements under gases1
SQUID magnetic measurements under O21
SQUID magnetic susceptibility and AC susceptibility1
Magnetic susceptibility, Quantum Design MPMS XL5 plus ultralow-temperature AC susceptibility in He3-He4 dilution refrigerator1
Raman, UV-vis and ZFC-FC magnetic susceptibility1
Curie-Weiss magnetic fitting and spin-state/e_g occupation calculation summarised in SI Table S21
SQUID/VSM magnetic susceptibility; Curie-Weiss and HTSE fits1
VT-VF SQUID magnetometry1