Thermogravimetric analysis and DSC
2025 · Electro Fenton degradation of glyphosate by incrassated defect-free conductive Cu metal organic framework
Cu-HHTP powder · Powder · 30-800 degC under N2, 50 mL min-1, heating rate 10 degC min-1.
DSC, DTA, calorimetry, heat-capacity and specific-heat measurements.
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.
The same technique may serve transport, electrochemistry, sensing or another scientific purpose.
Filter source method wording, sample context and scientific purpose.
107 measurements
2025 · Electro Fenton degradation of glyphosate by incrassated defect-free conductive Cu metal organic framework
Cu-HHTP powder · Powder · 30-800 degC under N2, 50 mL min-1, heating rate 10 degC min-1.
2025 · Metal-organic framework glass stabilizes high-voltage cathodes for efficient lithium-metal batteries
As-prepared Zn-P-dmbIm MOF powder · Powder · Under N2 in SI discussion; DSC method also states dry Ar from 30 to 300 deg C at 5 deg C/min.
2024 · Fabrication of nonlinear optical metal-organic framework dizinc tetraglycinate dihydrate with optical limiting applications
DZTGD single crystal · Single Crystal · Thermal spectrum from low temperature to 800 °C; dehydration and decomposition steps reported
2024 · Large-Area Metal–Organic Framework Glasses for Efficient X-Ray Detection
ZnBTA MOF glass detector · Electrode · Supplementary thermal analysis for ZnBTA; TGA from 25 to 500 C under N2 and DSC beginning from 30 C under N2 flow.
2024 · Large-Area Metal–Organic Framework Glasses for Efficient X-Ray Detection
ZnHBIm MOF glass detector · Electrode · Supplementary thermal analysis for ZnHBIm; TGA from 25 to 500 C under N2 and DSC beginning from 30 C under N2 flow.
2024 · Large-Area Metal–Organic Framework Glasses for Efficient X-Ray Detection
Dry ZnPIm powder · Powder · TGA under N2 at 5 C/min; DSC with heating/cooling rate 10 C/min under N2.
2024 · Large-Area Metal–Organic Framework Glasses for Efficient X-Ray Detection
ZnTzH MOF glass detector · Electrode · Supplementary thermal analysis for ZnTzH; TGA from 25 to 500 C under N2 and DSC beginning from 30 C under N2 flow.
2024 · Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance
Cu-Co-Try MOF powder (P1) · Powder · Thermogravimetric analysis of powder sample
2024 · Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance
Cu-Zn-Try MOF powder (P2) · Powder · Thermogravimetric analysis of powder sample
2024 · Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance
Cu-Er-Try MOF powder (P3) · Powder · Thermogravimetric analysis of powder sample
2024 · Mixed metal conductive MOFs constructed from Trypan blue linked metal nodes: characteristic features and electrochemical performance
Cu-Yb-Try MOF powder (P4) · Powder · Thermogravimetric analysis of powder sample
2024 · Three-type precursors for low-temperature solution-processed void-and-crack-free copper(I) iodide films: comparison of electrical conductivities and optical transparency
Isolated CuI-1A2P powdery solid · Powder · Isolated CuI-1A2P complex heated in dry air at 10 deg C min-1 to 600 deg C for TG-DTA; photographs at 80-120 deg C with 1.7 deg C min-1 heating rate.
2023 · CO2-Sensitive Porous Magnet: Antiferromagnet Creation from a Paramagnetic Charge-Transfer Layered Metal-Organic Framework
Activated crystals of compound 1 · Single Crystal · Shimadzu DSC-60, 320-230 K, 10 K min-1, CO2 flow 50 mL min-1 at general atmospheric pressure.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Cu7 · Powder · Thermogravimetric/differential thermal analysis for thermal stability; atmosphere and heating rate not reported in readable main text.
2023 · Controlled synthesis of Cu-/Ni-based 1D c-MOFs and their application in near-linear temperature sensing
Ni3 · Powder · Thermogravimetric/differential thermal analysis for thermal stability; atmosphere and heating rate not reported in readable main text.
2023 · Copper(i) iodide coordination polymers with triazole substituted pyridine ligands: photophysical and electrical conductivity properties
CP1 bulk powder · Powder · N2 flow 20 mL min^-1; heating rate 10 deg C min^-1; range 30-800 deg C
2023 · Copper(i) iodide coordination polymers with triazole substituted pyridine ligands: photophysical and electrical conductivity properties
CP2 bulk powder · Powder · N2 flow 20 mL min^-1; heating rate 10 deg C min^-1; range 30-800 deg C
2023 · Copper(i) iodide coordination polymers with triazole substituted pyridine ligands: photophysical and electrical conductivity properties
CP3 bulk yellow powder · Powder · N2 flow 20 mL min^-1; heating rate 10 deg C min^-1; range 30-800 deg C
2023 · Ionic Liquid-Laden Zn-MOF-74-Based Solid-State Electrolyte for Sodium Batteries
IL0.5@MOF (0.5:1) · Pellet · Approximately 10 mg sample, 5 deg C min-1 in air, 30-700 deg C, NETZSCH STA 449F3 or SDT 2960 Simultaneous DSC-TGA
2023 · Metal-Organic Framework Glass Catalysts from Melting Glass-Forming Cobalt-Based Zeolitic Imidazolate Framework for Boosting Photoelectrochemical Water Oxidation
10% Co-agZIF-62 glass · Powder · 10 C min-1 heating rate under N2; repeated DSC up-scans for glass transition
2023 · Regulating Crystallization and Lead Leakage of Perovskite Solar Cell Via Novel Polyoxometalate-Based Metal–Organic Framework
POMOF-functionalised perovskite film · Thin Film · TG and DSC at 5, 10, 15, and 20 K min-1; Kissinger Ea calculated for control and POMOF films.
2022 · Constructing a Redox-Active Cu(I)-Pyridyltriazine Framework for Catalytic Photoreduction of Nitrobenzenes and Carboxylic Cyclization of Alkynol with CO2
As-synthesised Cu(I)-TPT orange rhombus single crystals · Single Crystal · TGA/SDTA heated from 35 to 1000 C at 10 C min-1 under dynamic N2 atmosphere.
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 · 30-800 C, 20 C min^-1, N2 atmosphere, 50 cm3 min^-1 flow
2022 · Multi-stimulus semiconductor Cu(i)-I-pyrimidine coordination polymer with thermo- and mechanochromic sensing
CP1 precipitated bulk solid / polycrystalline powder · Powder · TA Instruments Q500; nitrogen flow 90 mL min^-1; heating rate 10 C min^-1; 25 to 1000 C.
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 · Specific heat measured between 0.1 and 300 K at mu0H = 0 and 1 T using semiadiabatic pulse technique with 1% temperature increase; triplicate measurements.
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 · Specific heat measured between 0.1 and 300 K at mu0H = 0 and 1 T using semiadiabatic pulse technique with 1% temperature increase; triplicate measurements.
2021 · Growth and Characterisation of Copper Complex of 2, 4, 6-Trioxypyrimidine: A Novel Luminescent and Active Pharmaceutical Material in Metal Organic Framework
Grown emerald coloured CuB single crystal · Single Crystal · Room temperature to 700 deg C; heating rate 20 deg C/min; nitrogen atmosphere.
2021 · Solar-driven ionic power generation: Via a film of nanocellulose @ conductive metal-organic framework
Freestanding CCM film · Thin Film · CCM on polystyrene sponge floated on 150 mL water, one-sun illumination; TGA-DSC simulation from 17 C to 53 C at 5 K min-1 then 53 C for 30 min.
2021 · Stabilization of NASICON-Type Electrolyte against Li Anode via an Ionic Conductive MOF-Incorporated Adhesive Interlayer
ZCPL film/interlayer · Thin Film · PEO+LiTFSI and ZCPL melting behaviour
2020 · A Dual-Ligand Porous Coordination Polymer Chemiresistor with Modulated Conductivity and Porosity
Cu3(HHTP)(THQ) nanowire black powder · Powder · EA on as-prepared and N2-filled dried samples; TG/DTA in N2 and air with 1-10 deg C min-1 heating rate.
2020 · Construction of a Succinate-Bridged Cd(II)-Based Two-Dimensional Coordination Polymer for Efficient Optoelectronic Device Fabrication and Explosive Sensing Application
As-synthesised bulk compound 1 powder/crystals · Powder · 30-600 deg C under nitrogen, flow rate 50 cm3 min-1, heating rate 2 deg C/min.
2020 · Emergence of electrical conductivity in a flexible coordination polymer by using chemical reduction
purple crystals of 1 · Single Crystal · Shimadzu DTG-60H under nitrogen gas flow of 50 mL/min.
2020 · Emergence of electrical conductivity in a flexible coordination polymer by using chemical reduction
black solid 2 from 1 · Powder · Shimadzu DTG-60H under nitrogen gas flow of 50 mL/min.
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 crystalline sample in nitrogen atmosphere up to 1100 C; heating rate 10 C min-1
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 crystalline sample in nitrogen atmosphere up to 1100 C; heating rate 10 C min-1
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 crystalline sample in nitrogen atmosphere up to 1100 C; heating rate 10 C min-1
2020 · Mixed Anionic and Cationic Redox Chemistry in a Tetrathiomolybdate Amorphous Coordination Framework
dehydrated <Na2MoS4> powder · Powder · TGA under N2 at 10 C min-1; PXRD survey of dehydration after annealing at different temperatures.
2020 · Particle size dependence of proton conduction in a cationic lanthanum phosphonate MOF
as-synthesised PCMOF21-AcO bulk powder · Powder · As-synthesised PCMOF21-AcO; water loss assessed to 190 deg C; SI Figure S1 shows mass-loss/DSC to 600 deg C.
2020 · Quantum spin liquid state in a two-dimensional semiconductive metal−organic framework
Cu3(HHTP)2-silver pellet for heat capacity · Pellet · 2-20 K PPMS; 0.065-2 K dilution refrigerator calorimeter; silver-particle pellet calibration.
2020 · Quantum spin liquid state in a two-dimensional semiconductive metal−organic framework
Zn3(HHTP)2 heat-capacity control sample · Pellet · Compared with Cu3(HHTP)2 to estimate the lattice heat capacity contribution.
2020 · The Advent of Electrically Conducting Double-Helical Metal-Organic Frameworks Featuring Butterfly-Shaped Electron-Rich π-Extended Tetrathiafulvalene Ligands
1, activated pristine dhMOF · Powder · Thermal analysis of pristine 1; SI: conducted under N2 atmosphere using an SDT Q600 instrument
2020 · The Advent of Electrically Conducting Double-Helical Metal-Organic Frameworks Featuring Butterfly-Shaped Electron-Rich π-Extended Tetrathiafulvalene Ligands
1a, iodine-treated washed evacuated dhMOF · Powder · Thermal analysis of iodine-treated, washed 1a; SI: conducted under N2 atmosphere using an SDT Q600 instrument
2020 · The Advent of Electrically Conducting Double-Helical Metal-Organic Frameworks Featuring Butterfly-Shaped Electron-Rich π-Extended Tetrathiafulvalene Ligands
1b, iodine-treated air-exposed unwashed dhMOF · Powder · Thermal analysis of iodine-treated air-exposed unwashed 1b; SI: conducted under N2 atmosphere using an SDT Q600 instrument
2020 · Unique Thermoelectric Properties Induced by Intrinsic Nanostructuring in a Polycrystalline Thin-Film Two-Dimensional Metal–Organic Framework, Copper Benzenehexathiol
synthesised Cu-BHT film · Thin Film · Calculated from number of atoms per unit volume; applicable for T greater than Debye temperature.
2019 · Efficient MOF-Sensitized Solar Cells Featuring Solvothermally Grown [100]-Oriented Pillared Porphyrin Framework-11 Films on ZnO/FTO Surfaces
C60-doped PPF-11 crystals · Powder · N2 atmosphere using SDT Q600; undoped and C60-doped PPF-11
2019 · Functionality in metal-organic framework minerals: Proton conductivity, stability and potential for polymorphism
ST1 crystals · Single Crystal · 5 mg hand-pressed pellet dissolved in 25 g of 5 molar aqueous HCl at 25 deg C; at least four measurements per sample.
2019 · Functionality in metal-organic framework minerals: Proton conductivity, stability and potential for polymorphism
ST2 crystals · Single Crystal · Mettler-Toledo TGA DSC 1 Star; N2 stream from 25 to 200 deg C at 5 deg C/min and air from 200 to 700 deg C at 10 deg C/min; sample size 2-10 mg.
2019 · Highly Electroconductive Metal-Organic Framework: Tunable by Metal Ion Sorption Quantity
activated TMU-60 crystals · Powder · 25 to 600 C, 10 C/min, neutral N2 atmosphere.
2019 · Li + Ion-Conducting Sulfonate-Based Neutral Metal-Organic Framework
Activated pristine [Cu2(BPY)2(NDIDS)] MOF powder · Powder · N2 atmosphere using SDT Q600; compared vacuum-dried pristine MOF and LiClO4-doped MOF.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
BCA-Ni-Mn-MOFs · Powder · Air flow 10 mL min-1, heating rate 10 C min-1; SI Fig. S8 precursor TG/DTA curve.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
DTA-Ni-Mn-MOFs · Powder · Air flow 10 mL min-1, heating rate 10 C min-1; SI Fig. S8 precursor TG/DTA curve.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
OBA-Ni-Mn-MOFs · Powder · Air flow 10 mL min-1, heating rate 10 C min-1; SI Fig. S8 precursor TG/DTA curve.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
PTA-Ni-Mn-MOFs · Powder · Air flow 10 mL min-1, heating rate 10 C min-1; SI Fig. S8 precursor TG/DTA curve.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
PTCDA-Ni-Mn-MOFs · Powder · Air flow 10 mL min-1, heating rate 10 C min-1; SI Fig. S8 precursor TG/DTA curve.
2019 · Metal-organic framework-mediated synthesis of LiNi0.5Mn1.5O4: Tuning the Mn3+ content and electrochemical performance by organic ligands
TCA-Ni-Mn-MOFs · Powder · Air flow 10 mL min-1, heating rate 10 C min-1; SI Fig. S8 precursor TG/DTA curve.
2019 · Three-Dimensional-Coordination Polymer of Zn(II)-Carboxylate: Structural Elucidation, Photoelectrical Conductivity, and Biological Activity
as-synthesised brown crystals of compound 1 · Single Crystal · 30-600 deg C under inert N2 atmosphere.
2018 · A new semiconducting coordination polymer consisting of copper(I)-iodide and 3-pyridinecarboxaldehyde
Powdered sample of [CuI(3-Py-CHO)]n · Powder · TG-DTA carried out with a RIGAKU Thermo Plus 8120 under flowing N2 gas.
2018 · Effect on Schottky behaviour of 1D coordination polymers by altering para-substituents on benzoate ligands
Compound 1 yellow block crystals · Single Crystal · 30-800 degrees C under nitrogen, heating rate 12 degrees C min^-1.
2018 · Effect on Schottky behaviour of 1D coordination polymers by altering para-substituents on benzoate ligands
Compound 2 yellow block crystals · Single Crystal · 30-800 degrees C under nitrogen, heating rate 12 degrees C min^-1.
2018 · High electrical conductivity and high porosity in a Guest@MOF material: Evidence of TCNQ ordering within Cu3BTC2 micropores
1.0TCNQ@Cu3BTC2 · Powder · 5-10 mg MOF powder sealed in aluminium crucible in glovebox; transferred under Ar stream 40 mL min^-1; heated from 30 to 550 C at 5 C min^-1.
2018 · Highly Conducting Neutral Coordination Polymer with Infinite Two-Dimensional Silver-Sulfur Networks
Ag-BHT sample, form not specified · Unknown · Experimental Cp/T data up to 4 K fitted to Cp(T)/T = gamma + beta T^2.
2018 · Semiconducting lanthanide polymers of pyridine-2,6-dicarboxylate: Hydrothermal synthesis, structural characterization, electrical conductivity and luminescence properties
compound 1 colourless crystals · Single Crystal · 50-900 C under N2, heating rate 10 C min^-1; single crystals selected under optical microscope.
2018 · Semiconducting lanthanide polymers of pyridine-2,6-dicarboxylate: Hydrothermal synthesis, structural characterization, electrical conductivity and luminescence properties
compound 2 violet crystals · Single Crystal · 50-900 C under N2, heating rate 10 C min^-1; single crystals selected under optical microscope.
2017 · Direct Observation of Confined I−⋅⋅⋅I2⋅⋅⋅I− Interactions in a Metal–Organic Framework: Iodine Capture and Sensing
G@1 yellow crystals · Single Crystal · C/H/N microanalysis; IR 4000-400 cm-1; PXRD at 293 K using Cu-Kalpha; TG under dry N2 at 5 C/min.
2017 · Electrical semiconduction modulated by light in a cobalt and naphthalene diimide metal-organic framework
MOF-CoNDI-py-2 purple leaf-like crystals/powder · Single Crystal · O2 atmosphere, room temperature to 1000 deg C, 10 deg C min^-1.
2017 · Lowering Band Gap of an Electroactive Metal-Organic Framework via Complementary Guest Intercalation
TTF-doped DSNDI-based MOF-74 powder · Powder · TGA and DSC analysis under N2 comparing undoped and TTF-doped MOF-74.
2017 · Mixed-metallic MOF based electrode materials for high performance hybrid supercapacitors
Co/Ni-MOF NAFLs · Nanosheet · Room temperature to 800 C; 5 C min-1 reported for results discussion.
2017 · Mixed-metallic MOF based electrode materials for high performance hybrid supercapacitors
Ni-MOF powder / NAFL control · Nanosheet · Room temperature to 800 C; 5 C min-1 reported for results discussion.
2017 · Mixed-metallic MOF based electrode materials for high performance hybrid supercapacitors
Zn/Ni-MOF NAFLs · Nanosheet · Room temperature to 800 C; 5 C min-1 reported for results discussion.
2017 · Multiple-Hydrogen-Bond Approach to Uncommon Pd(III) Oxidation State: A Pd-Br Chain with High Conductivity and Thermal Stability
Copper-luster rod-like single crystals of compound 3 · Single Crystal · DSC thermograms at a scan rate of 10 K min-1, heating and cooling.
2017 · Multiple-Hydrogen-Bond Approach to Uncommon Pd(III) Oxidation State: A Pd-Br Chain with High Conductivity and Thermal Stability
Copper-luster rod-like single crystals of compound 3 · Single Crystal · TGA/DTA trace at a scan rate of 10 K min-1.
2017 · Synthesis of ordered carbonaceous frameworks from organic crystals
Ni2-CPDPy · Powder · TG in N2 up to 1073 K; DSC up to 623 K, N2 flow.
2016 · Coordination environments and π-conjugation in dense lithium coordination polymers
Compound 1 pale yellow plates · Single Crystal · TA Instruments Q600 SDT, air flow 100 mL min-1, heating rate 5 °C min-1, room temperature to 600 °C
2015 · Confinement of single polysilane chains in coordination nanospaces
1a-PMPrS powder composite, 30 wt percent PMPrS · Powder · DSC under N2 atmosphere; heating rate 10 K min-1.
2015 · Confinement of single polysilane chains in coordination nanospaces
1b-PMPrS powder composite, 30 wt percent PMPrS · Powder · DSC under N2 atmosphere; heating rate 10 K min-1.
2015 · Confinement of single polysilane chains in coordination nanospaces
bulk PMPrS polymer · Powder · DSC under N2 atmosphere; heating rate 10 K min-1.
2015 · Lithium Ion Diffusion in a Metal-Organic Framework Mediated by an Ionic Liquid
ELT-bulk · Unknown · Hermetically sealed in aluminium pans under dried argon; heated to 473 K, cooled to 153 K, then reheated to 473 K at 5 K min^-1.
2015 · Lithium Ion Diffusion in a Metal-Organic Framework Mediated by an Ionic Liquid
ELT@Z100 · Pellet · Hermetically sealed in aluminium pans under dried argon; heated to 473 K, cooled to 153 K, then reheated to 473 K at 5 K min^-1.
2015 · Lithium Ion Diffusion in a Metal-Organic Framework Mediated by an Ionic Liquid
ELT@Z75 · Pellet · Hermetically sealed in aluminium pans under dried argon; heated to 473 K, cooled to 153 K, then reheated to 473 K at 5 K min^-1.
2015 · Topochemical conversion of a dense metal-organic framework from a crystalline insulator to an amorphous semiconductor
Compound 3 vacuum-dried black monolith · Unknown · TA Instruments Q600 SDT, room temperature to 600 deg C, air or N2 flow 100 mL min-1, heating rate 5 deg C min-1.
2014 · Control of crystalline proton-conducting pathways by water-induced transformations of hydrogen-bonding networks in a metal-organic framework
air-dried 1·2H2O sample · Powder · air-dried 1·nH2O under nitrogen gas flow of 100 mL min-1, room temperature to 500 °C, 5 °C min-1 heating rate
2014 · Synthesis, characterisation and thermal degradation behaviour of some coordination polymers by using TG-DTG and DTA techniques
Co(II)-fbpmpc coordination polymer powder · Powder · Non-isothermal TG/DTG/DTA from 28-1220 C at 10 C min-1 under nitrogen.
2014 · Synthesis, characterisation and thermal degradation behaviour of some coordination polymers by using TG-DTG and DTA techniques
Cu(II)-fbpmpc coordination polymer powder · Powder · Non-isothermal TG/DTG/DTA from 28-1220 C at 10 C min-1 under nitrogen.
2014 · Synthesis, characterisation and thermal degradation behaviour of some coordination polymers by using TG-DTG and DTA techniques
Mn(II)-fbpmpc coordination polymer powder · Powder · Non-isothermal TG/DTG/DTA from 28-1220 C at 10 C min-1 under nitrogen.
2014 · Synthesis, characterisation and thermal degradation behaviour of some coordination polymers by using TG-DTG and DTA techniques
Ni(II)-fbpmpc coordination polymer powder · Powder · Non-isothermal TG/DTG/DTA from 28-1220 C at 10 C min-1 under nitrogen.
2013 · Electrical bistability around room temperature in an unprecedented one-dimensional coordination magnetic polymer
Polycrystalline compound 1 sample · Powder · Polycrystalline compound 1 measured on Mettler Toledo DSC-821e from 400 to 200 K; scans at 2 K/min including first cooling/heating, second cooling/heating, and third cooling.
2013 · Two one-dimensional germanium(IV) coordination polymers based on macrocyclic tetraaza[14]annulene with notable semiconducting property
pressed-pellet powder compaction of compound 1 · Pellet · TGA/DSC thermal trace in supporting information; atmosphere and ramp rate not stated.
2013 · Two one-dimensional germanium(IV) coordination polymers based on macrocyclic tetraaza[14]annulene with notable semiconducting property
pressed-pellet powder compaction of compound 2 · Pellet · TGA/DSC thermal trace in supporting information; atmosphere and ramp rate not stated.
2012 · High performance metal–organic-framework coatings obtained via thermal gradient synthesis
Commercial Basolite C-300 copper trimesate · Powder · Setaram C-80 calorimeter; Basolite C-300 dehydrated under vacuum at 120 deg C; preliminary temperature run; temperature steps 25 K/h; polynomial fit used for coating thermal-conductivity measurements.
2012 · Synthesis, characterization and solid state electrical properties of 1-D coordination polymer of the type [CuxNi1-x(dadb) ·yH2O]n
Complex 3 powder / pressed pellet · Powder · DSC at 5 deg C/min under nitrogen using spec pure grade indium standard in closed lid aluminium pan, RT to 300 deg C.
2011 · Synthesis and characterization of a novel kind soluble, conjugated, and fluorescent chelate polymer containing fluorene ring in the backbone: Optical, electrical, and electrochemical properties
poly(3,4-HBA-Cr-FDA) bulk chelate polymer · Powder · 25-420 deg C in N2 at 20 deg C/min.
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 · 60 mg sample in platinum crucible; dry nitrogen flow; 10 deg C/min; Du Pont 9900 thermal analyser
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 · 60 mg sample in platinum crucible; dry nitrogen flow; 10 deg C/min; Du Pont 9900 thermal analyser
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 · 60 mg sample in platinum crucible; dry nitrogen flow; 10 deg C/min; Du Pont 9900 thermal analyser
2009 · A novel lamella 2D Ag(I) coordination polymer of graphite-like structure featuring short interlayer distance
Bulk powder/crystalline solid of 1 · Powder · Measured from 30 to 800 degC on an SDT Q600 under nitrogen gas flow of 5 ml/min.
2009 · Soluble semi-conductive chelate polymers containing Cr(III) in the backbone: Synthesis, characterization, optical, electrochemical, and electrical properties
P-1 as-synthesised polymer · Powder · TG-DTA from 20 to 1000 C in N2 at 10 C/min; DSC from 25 to 420 C in N2 at 20 C/min
2008 · Synthesis and changes of conductivities and thermal stabilities of 4,4′-oxybis [N-(3,4-dihydroxybenzilidene) aniline] chelate polymers
3,4-HBA monomer, pristine pressed pellet/solid · Pellet · 20-1000 °C under N2 at 10 °C/min heating rate.
2008 · Synthesis and changes of conductivities and thermal stabilities of 4,4′-oxybis [N-(3,4-dihydroxybenzilidene) aniline] chelate polymers
P-3,4-HBA-Cd pristine coordination-polymer solid/pellet · Pellet · 20-1000 °C under N2 at 10 °C/min heating rate.
2008 · Synthesis and changes of conductivities and thermal stabilities of 4,4′-oxybis [N-(3,4-dihydroxybenzilidene) aniline] chelate polymers
P-3,4-HBA-Co pristine coordination-polymer solid/pellet · Pellet · 20-1000 °C under N2 at 10 °C/min heating rate.
2008 · Synthesis and changes of conductivities and thermal stabilities of 4,4′-oxybis [N-(3,4-dihydroxybenzilidene) aniline] chelate polymers
P-3,4-HBA-Cr pristine coordination-polymer solid/pellet · Pellet · 20-1000 °C under N2 at 10 °C/min heating rate.
2008 · Synthesis and changes of conductivities and thermal stabilities of 4,4′-oxybis [N-(3,4-dihydroxybenzilidene) aniline] chelate polymers
P-3,4-HBA-Cu pristine coordination-polymer solid/pellet · Pellet · 20-1000 °C under N2 at 10 °C/min heating rate.
2008 · Synthesis and changes of conductivities and thermal stabilities of 4,4′-oxybis [N-(3,4-dihydroxybenzilidene) aniline] chelate polymers
P-3,4-HBA-Mn pristine coordination-polymer solid/pellet · Pellet · 20-1000 °C under N2 at 10 °C/min heating rate.
2008 · Synthesis and changes of conductivities and thermal stabilities of 4,4′-oxybis [N-(3,4-dihydroxybenzilidene) aniline] chelate polymers
P-3,4-HBA-Ni pristine coordination-polymer solid/pellet · Pellet · 20-1000 °C under N2 at 10 °C/min heating rate.
2008 · Synthesis and changes of conductivities and thermal stabilities of 4,4′-oxybis [N-(3,4-dihydroxybenzilidene) aniline] chelate polymers
P-3,4-HBA-Pb pristine coordination-polymer solid/pellet · Pellet · 20-1000 °C under N2 at 10 °C/min heating rate.
2008 · Synthesis and changes of conductivities and thermal stabilities of 4,4′-oxybis [N-(3,4-dihydroxybenzilidene) aniline] chelate polymers
P-3,4-HBA-Zn pristine coordination-polymer solid/pellet · Pellet · 20-1000 °C under N2 at 10 °C/min heating rate.
2008 · Synthesis and changes of conductivities and thermal stabilities of 4,4′-oxybis [N-(3,4-dihydroxybenzilidene) aniline] chelate polymers
P-3,4-HBA-Zr pristine coordination-polymer solid/pellet · Pellet · 20-1000 °C under N2 at 10 °C/min heating rate.
1984 · Cofacial Assembly of Metallomacrocycles as an Approach to Controlling Lattice Architecture in Low-Dimensional Molecular Solids. Chemical, Structural, Oxidation-State, Transport, and Optical Properties of the Coordination Polymer [Fe(phthalocyaninato)(μ-pyrazine)]n and the Consequences of Halogen Doping
Table IV iodine-doped TGA/DTA series · Powder · Netzsch-Simultan thermoanalyser under nitrogen, heating rate 2 deg/min; Al2O3 standard for DTA.
No mapped measurement matches these filters.
These are the exact source-preserving method strings consolidated by this technique group.
| Raw method label | Mapped measurements |
|---|---|
| TGA-DTA/DTG using Perkin Elmer Diamond Thermal Analyzer | 10 |
| thermogravimetric analysis / differential thermal analysis (TG/DTA) | 6 |
| TGA/DTA | 5 |
| TGA and DSC | 5 |
| TG/DTG/DTA thermal analysis | 4 |
| TGA/DSC | 4 |
| Thermogravimetric analysis coupled with differential scanning calorimetry (TGA/DSC) | 4 |
| TG-DSC | 3 |
| differential thermal analysis (DTA) | 3 |
| Differential scanning calorimetry (DSC), DSC3100SA | 3 |
| Thermogravimetric analysis (Mettler Toledo TGA/DSC 1 star e-system) | 3 |
| Differential scanning calorimetry | 3 |
| simultaneous thermogravimetric analysis (TG) and differential thermal analysis (DTA) | 3 |
| TGA/DSC thermal analysis | 3 |
| Specific heat capacity in PPMS with dilution refrigerator | 2 |
| Thermogravimetric analysis using PerkinElmer Pyris Diamond TG/DTA. | 2 |
| Thermogravimetric analysis using Perkin Elmer Pyris Diamond TG/DTA. | 2 |
| Differential scanning calorimetry (DSC) | 2 |
| Thermogravimetric analysis and differential thermal analysis | 2 |
| TGA-DTA | 2 |
| Thermogravimetric analysis (TGA/DTA) | 1 |
| Thermogravimetric analysis/differential scanning calorimetry (TGA/DSC) | 1 |
| Elemental microanalysis, FT-IR, PXRD and TG-DSC/DTA general characterisation. | 1 |
| Thermogravimetric analysis on PerkinElmer Pyris Diamond TG/DTA | 1 |
| Dulong-Petit specific heat calculation | 1 |
| thermogravimetric analysis/differential thermal analysis | 1 |
| differential scanning calorimetry | 1 |
| thermogravimetric analysis and differential thermal analysis | 1 |
| thermogravimetric analysis (TGA), PerkinElmer Pyris Diamond TG/DTA | 1 |
| Calorimetry heat-capacity regression | 1 |
| thermogravimetric analysis with Bruker TG-DTA 2000SA | 1 |
| Thermogravimetric analysis coupled to differential thermal analysis (TGA-DTA) | 1 |
| DSC | 1 |
| Thermogravimetric analysis / DTA | 1 |
| TG/DSC Kissinger analysis | 1 |
| Thermogravimetric and differential thermal analysis | 1 |
| TG and DSC | 1 |
| Thermogravimetry-differential thermal analysis and hotplate photographs | 1 |
| Room-temperature acid dissolution calorimetry | 1 |
| TG-DTA and DSC thermal analysis | 1 |
| TGA/DTA using PerkinElmer STA 8000 simultaneous thermal analyser | 1 |
| TGA/DSC with temperature-dependent PXRD | 1 |
| thermogravimetric analysis / DSC | 1 |
| TGA-DSC | 1 |
| TGA/DTA using Perkin Elmer STA 6000 | 1 |
| Differential scanning calorimetry (DSC) using Perkin Elmer Pyris Sapphire DSC | 1 |
| heat capacity in PPMS | 1 |
| Simultaneous DSC-TGA | 1 |
| Differential scanning calorimetry under CO2 flow | 1 |
| Solar thermal evaporation; mass loss by balance; TGA-DSC simulation; FTIR | 1 |
| TGA/DTG; TA Instruments SDT 2960 Simultaneous DTA-TGA | 1 |
| Elemental analysis and thermogravimetric/differential thermal analysis | 1 |
| Specific heat capacity, Quantum Design PPMS Model 6000 with Model 6500 option and self-designed calorimeter in He3-He4 dilution refrigerator | 1 |
| Specific heat capacity control measurement | 1 |
| Simultaneous thermogravimetric analysis and differential scanning calorimetry | 1 |
| Thermogravimetric analysis and DSC | 1 |