ThermoelectricUnspecified subtype
2025 · Flexible conductive metal-organic framework Cu3(HHTP)2 film with high thermoelectric performance for low-grade heat harvesting
HP-1 Cu3(HHTP)2/Nylon hot-pressed film · Thin Film · Room-temperature thermoelectric test of HP-1 volume-series film.
ThermoelectricUnspecified subtype
2025 · Flexible conductive metal-organic framework Cu3(HHTP)2 film with high thermoelectric performance for low-grade heat harvesting
HP-2 Cu3(HHTP)2/Nylon hot-pressed film · Thin Film · Room-temperature thermoelectric test of HP-2 volume-series film.
ThermoelectricUnspecified subtype
2025 · Flexible conductive metal-organic framework Cu3(HHTP)2 film with high thermoelectric performance for low-grade heat harvesting
HP-3 Cu3(HHTP)2/Nylon hot-pressed film at 333 K · Thin Film · Room-temperature thermoelectric test of HP-3, 20 mL film hot pressed at 333 K.
ThermoelectricUnspecified subtype
2025 · Flexible conductive metal-organic framework Cu3(HHTP)2 film with high thermoelectric performance for low-grade heat harvesting
Optimised Cu3(HHTP)2/Nylon hot-pressed film at 353 K · Thin Film · Room-temperature thermoelectric test of optimised 20 mL film hot pressed at 353 K.
ThermoelectricUnspecified subtype
2025 · Flexible conductive metal-organic framework Cu3(HHTP)2 film with high thermoelectric performance for low-grade heat harvesting
Cu3(HHTP)2/Nylon hot-pressed film at 373 K · Thin Film · Room-temperature thermoelectric test of 20 mL film hot pressed at 373 K.
ThermoelectricUnspecified subtype
2025 · Flexible conductive metal-organic framework Cu3(HHTP)2 film with high thermoelectric performance for low-grade heat harvesting
HP-4 Cu3(HHTP)2/Nylon hot-pressed film · Thin Film · Room-temperature thermoelectric test of HP-4 volume-series film.
ThermoelectricUnspecified subtype
2025 · Selenium-Substitution Strategy for Enhanced Mobility, Tunable Bandgap, and Improved Electrochemical Energy Storage in Semiconducting Conjugated Coordination Polymers
Ag4TSHQ pressed pellet · Pellet · SB-100 Seebeck Measurement System; Figure 3f compares Ag4TSHQ and Ag4TTHQ from 300-400 K.
ThermoelectricUnspecified subtype
2025 · Selenium-Substitution Strategy for Enhanced Mobility, Tunable Bandgap, and Improved Electrochemical Energy Storage in Semiconducting Conjugated Coordination Polymers
Ag4TTHQ pressed pellet · Pellet · Comparison sulfur analogue in Figure 3f.
ThermoelectricUnspecified subtype
2025 · Selenium-Substitution Strategy for Enhanced Mobility, Tunable Bandgap, and Improved Electrochemical Energy Storage in Semiconducting Conjugated Coordination Polymers
Ag4TXHQ-1:1 powder · Powder · Temperature-dependent Seebeck coefficient for Ag4TXHQ species, Figure S11.
ThermoelectricUnspecified subtype
2025 · Uninterrupted π-d Conjugated Three-Dimensional Conductive Metal-Organic Framework
Rectangular Ni3HBC pellet for electrical and thermal transport · Pellet · High-vacuum cryostat; Seebeck voltage and thermocouple voltages measured with Keithley 2182a nanovoltmeter; temperature gradient from an ohmic heater.
ThermoelectricUnspecified subtype
2024 · Aliovalent Substitution Tunes Physical Properties in a Conductive Bis(dithiolene) Two-Dimensional Metal-Organic Framework
Ni3(THT)2 pressed pellet for four-probe and Seebeck measurements · Pellet · custom probe station in argon glovebox; forward and reverse Seebeck scans; geometry correction for conductivity and Seebeck
ThermoelectricUnspecified subtype
2024 · Control of the Hydroquinone/Benzoquinone Redox State in High-Mobility Semiconducting Conjugated Coordination Polymers
pressed Ag4TTBQ pellet with gold electrodes · Pellet · SB-100 Seebeck Measurement System (MMR Tech.); standard reference method; high vacuum about 10 mtorr; measurements repeated at least three times.
ThermoelectricUnspecified subtype
2024 · Control of the Hydroquinone/Benzoquinone Redox State in High-Mobility Semiconducting Conjugated Coordination Polymers
pressed Ag4TTHQ pellet with gold electrodes · Pellet · SB-100 Seebeck Measurement System (MMR Tech.); standard reference method; high vacuum about 10 mtorr; measurements repeated at least three times.
ThermoelectricUnspecified subtype
2024 · Controlling Film Formation and Host-Guest Interactions to Enhance the Thermoelectric Properties of Nickel-Nitrogen-Based 2D Conjugated Coordination Polymers
as-synthesised Ni-HAB film · Thin Film · As-synthesised, N2-stored, and annealed Ni-HAB states compared in Figure 2c-e.
ThermoelectricUnspecified subtype
2024 · Controlling Film Formation and Host-Guest Interactions to Enhance the Thermoelectric Properties of Nickel-Nitrogen-Based 2D Conjugated Coordination Polymers
as-synthesised Ni-HATI-H film · Thin Film · As-synthesised, N2-stored, and annealed Ni-HATI-H states compared in Figure 2c-e.
ThermoelectricUnspecified subtype
2024 · Controlling Film Formation and Host-Guest Interactions to Enhance the Thermoelectric Properties of Nickel-Nitrogen-Based 2D Conjugated Coordination Polymers
as-synthesised Ni-HATI-Me film · Thin Film · As-synthesised, N2-stored, and annealed Ni-HATI-Me states compared in Figure 2c-e.
ThermoelectricUnspecified subtype
2024 · Controlling Film Formation and Host-Guest Interactions to Enhance the Thermoelectric Properties of Nickel-Nitrogen-Based 2D Conjugated Coordination Polymers
as-synthesised Ni-HATP film · Thin Film · As-synthesised, N2-stored, and annealed Ni-HATP states compared in Figure 2c-e.
ThermoelectricUnspecified subtype
2024 · Controlling Film Formation and Host-Guest Interactions to Enhance the Thermoelectric Properties of Nickel-Nitrogen-Based 2D Conjugated Coordination Polymers
annealed Ni-HATP film · Thin Film · Annealed Ni-HATP films measured from about 100 to 300 K; used to test hopping, SLoT, Zabrodskii, and heterogeneous transport models.
ThermoelectricUnspecified subtype
2024 · Controlling Film Formation and Host-Guest Interactions to Enhance the Thermoelectric Properties of Nickel-Nitrogen-Based 2D Conjugated Coordination Polymers
annealed Ni-HATP film · Thin Film · Highest-performing Ni-HATP thin films; room-temperature thermoelectric measurements.
ThermoelectricUnspecified subtype
2024 · Three-type precursors for low-temperature solution-processed void-and-crack-free copper(I) iodide films: comparison of electrical conductivities and optical transparency
CuI(1A2P) film on glass · Thin Film · Prepared CuI(1A2P) thin film compared with literature CuI films.
ThermoelectricUnspecified subtype
2023 · Hierarchical conductive metal-organic framework films enabling efficient interfacial mass transfer
Zn-HHTP-H film on Si/SiO2 · Thin Film · Temperature-difference-dependent thermal voltage for Zn-HHTP-H film.
ThermoelectricUnspecified subtype
2023 · Semiconducting Conjugated Coordination Polymer with High Charge Mobility Enabled by “4 + 2” Phenyl Ligands
Cu4DHTTB pellet sample · Pellet · SB-100 Seebeck Measurement System on same pellet type as conductivity measurements; high vacuum; repeated three times.
ThermoelectricUnspecified subtype
2022 · Charge. transport, conductivity and Seebeck coefficient in pristine and TCNQ loaded preferentially grown metal-organic framework films
Preferentially (001)-oriented pristine HKUST-1 SURMOF film, 100 nm · Thin Film · Horizontal Seebeck coefficient of 100 nm highly oriented HKUST-1 film over approximately 295-350 K.
ThermoelectricUnspecified subtype
2022 · Charge. transport, conductivity and Seebeck coefficient in pristine and TCNQ loaded preferentially grown metal-organic framework films
Preferentially (001)-oriented TCNQ-loaded HKUST-1 SURMOF film, 100 nm · Thin Film · Horizontal Seebeck coefficient of 100 nm highly oriented TCNQ-loaded HKUST-1 film over approximately 295-350 K.
ThermoelectricUnspecified subtype
2022 · Charge. transport, conductivity and Seebeck coefficient in pristine and TCNQ loaded preferentially grown metal-organic framework films
Random polycrystalline pristine HKUST-1 SURMOF film on thermally oxidized Si, 200 nm · Thin Film · Horizontal Seebeck coefficient of random polycrystalline HKUST-1 film on thermally oxidized Si from 290-330 K, compared with TCNQ-loaded film.
ThermoelectricUnspecified subtype
2022 · Charge. transport, conductivity and Seebeck coefficient in pristine and TCNQ loaded preferentially grown metal-organic framework films
Random polycrystalline TCNQ-loaded HKUST-1 SURMOF film on thermally oxidized Si, 200 nm · Thin Film · Horizontal Seebeck coefficient of 200 nm TCNQ-loaded random polycrystalline HKUST-1 film from 290-350 K.
ThermoelectricUnspecified subtype
2022 · Chemical structure modulation in conductive MOFs by adjusting the oxidation state of the ligand and introducing alkali metal ions
MnHHB compressed cuboid pellet · Pellet · MnHHB at 300 K; five trials shown in Fig. S11.
ThermoelectricUnspecified subtype
2022 · Precise tuning of interlayer electronic coupling in layered conductive metal-organic frameworks
Ni3(HATI_C1)2 pressed pellet · Pellet · Home-built steady-state system/Keithley 4200 SCS; nitrogen glovebox; pellets heated at 150 C in vacuum for 2 h before measurement.
ThermoelectricUnspecified subtype
2022 · Precise tuning of interlayer electronic coupling in layered conductive metal-organic frameworks
Ni3(HATI_C3)2 pressed pellet · Pellet · Home-built steady-state system/Keithley 4200 SCS; nitrogen glovebox; pellets heated at 150 C in vacuum for 2 h before measurement.
ThermoelectricUnspecified subtype
2022 · Precise tuning of interlayer electronic coupling in layered conductive metal-organic frameworks
Ni3(HATI_C4)2 pressed pellet · Pellet · Home-built steady-state system/Keithley 4200 SCS; nitrogen glovebox; pellets heated at 150 C in vacuum for 2 h before measurement.
ThermoelectricUnspecified subtype
2022 · Precise tuning of interlayer electronic coupling in layered conductive metal-organic frameworks
Ni3(HATI_C4)2 pressed pellet · Pellet · Seebeck coefficient of Ni3(HATI_C4)2 plotted versus temperature; I-V curves at 300-400 K.
ThermoelectricUnspecified subtype
2022 · Tunable Carrier Type of a Semiconducting 2D Metal-Organic Framework Cu3(HHTP)2
CuHHTP-PAA-40 PAA-transferred Cu3(HHTP)2 film · Thin Film · Comparative charge transport data for PAA-transferred films dried at 40 C and 70 C.
ThermoelectricUnspecified subtype
2022 · Tunable Carrier Type of a Semiconducting 2D Metal-Organic Framework Cu3(HHTP)2
CuHHTP-40 PMMA-transferred Cu3(HHTP)2 film · Thin Film · Average from five independent films at drying temperature 40 C.
ThermoelectricUnspecified subtype
2022 · Tunable Carrier Type of a Semiconducting 2D Metal-Organic Framework Cu3(HHTP)2
CuHHTP-70 PMMA-transferred Cu3(HHTP)2 film · Thin Film · Average from five independent films at drying temperature 70 C.
ThermoelectricUnspecified subtype
2021 · From n- To p-Type Material: Effect of Metal Ion on Charge Transport in Metal-Organic Materials
Ni-HITP pressed pellet · Pellet · Room-temperature Seebeck coefficient; negative slope indicates n-type majority carriers.
ThermoelectricUnspecified subtype
2021 · From n- To p-Type Material: Effect of Metal Ion on Charge Transport in Metal-Organic Materials
Pd-HITP transport sample · Pellet · SI thermovoltage plot shows positive slope for Pd-HITP.
ThermoelectricUnspecified subtype
2021 · From n- To p-Type Material: Effect of Metal Ion on Charge Transport in Metal-Organic Materials
a-Pt-HITP pressed pellet · Pellet · Room-temperature Seebeck coefficient; positive slope indicates p-type majority carriers.
ThermoelectricUnspecified subtype
2021 · Solar-driven ionic power generation: Via a film of nanocellulose @ conductive metal-organic framework
Freestanding CCM film · Thin Film · Dry CCM film; one side exposed to one sun for different intervals to generate thermal gradients.
ThermoelectricUnspecified subtype
2020 · Air-Stability and Carrier Type in Conductive M3(Hexaaminobenzene)2,(M = Co, Ni, Cu)
Ni-HAB pressed-powder pellet · Pellet · Sealed vacuum desiccator under positive pressure flowing nitrogen with wet/dry nitrogen flow control
ThermoelectricUnspecified subtype
2020 · Air-Stability and Carrier Type in Conductive M3(Hexaaminobenzene)2,(M = Co, Ni, Cu)
Co-HAB pressed-powder pellet · Pellet · Pressed pellet measured under conditions identical to conductivity measurements
ThermoelectricUnspecified subtype
2020 · Air-Stability and Carrier Type in Conductive M3(Hexaaminobenzene)2,(M = Co, Ni, Cu)
Cu-HAB pressed-powder pellet · Pellet · Pressed pellet measured under nitrogen and ambient conditions
ThermoelectricUnspecified subtype
2020 · Air-Stability and Carrier Type in Conductive M3(Hexaaminobenzene)2,(M = Co, Ni, Cu)
Ni-HAB pressed-powder pellet · Pellet · Pressed pellet measured under nitrogen and ambient conditions
ThermoelectricUnspecified subtype
2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design
annealed Ni-btt freestanding pellet · Pellet · Average thermoelectric properties at 305 K after annealing at 150 degC for 5 h in air.
ThermoelectricUnspecified subtype
2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design
annealed Ni-diett freestanding pellet · Pellet · Average thermoelectric properties at 305 K after annealing at 150 degC for 5 h in air.
ThermoelectricUnspecified subtype
2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design
annealed Ni-ett freestanding pellet · Pellet · Average thermoelectric properties at 305 K after annealing at 150 degC for 5 h in air.
ThermoelectricUnspecified subtype
2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design
pristine Ni-btt freestanding pellet · Pellet · Freestanding pristine pellet; Figure 4 black data points across approximately 293-363 K for conductivity and 305-385 K for Seebeck coefficient.
ThermoelectricUnspecified subtype
2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design
pristine Ni-diett freestanding pellet · Pellet · Freestanding pristine pellet; Figure 4 black data points across approximately 293-363 K for conductivity and 305-385 K for Seebeck coefficient.
ThermoelectricUnspecified subtype
2020 · Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design
pristine Ni-ett freestanding pellet · Pellet · Freestanding pristine pellet; Figure 4 black data points across approximately 293-363 K for conductivity and 305-385 K for Seebeck coefficient.
ThermoelectricUnspecified subtype
2020 · Electrochemical deposition and thermoelectric characterisation of a semiconducting 2-D metal-organic framework thin film
150 nm Cu metal film on glass · Thin Film · 150 nm physically deposited Cu film on glass
ThermoelectricUnspecified subtype
2020 · Electrochemical deposition and thermoelectric characterisation of a semiconducting 2-D metal-organic framework thin film
Cu3(HHTP)2 pressed pellet · Pellet · Ambient conditions; temperature differential applied across pellet; indium contacts used
ThermoelectricUnspecified subtype
2020 · Electrochemical deposition and thermoelectric characterisation of a semiconducting 2-D metal-organic framework thin film
PMMA-transferred Cu3(HHTP)2 thin film · Thin Film · PMMA-transferred Cu3(HHTP)2 thin film; standard error from five repeats
ThermoelectricUnspecified subtype
2020 · High Thermopower in a Zn-Based 3D Semiconductive Metal-Organic Framework
Cold-pressed Zn-HAB pellet · Pellet · Pressed pellet sandwiched between bottom stage and copper block; Seebeck voltage measured using Keithley 4200-SCS at eight temperature gradients around each set point +/-2 K.
ThermoelectricUnspecified subtype
2020 · Nanorods of a novel highly conductive 2D metal-organic framework based on perthiolated coronene for thermoelectric conversion
Ni-PTC compressed cuboid pellet for electrical conductivity and Seebeck measurements · Pellet · PF = S2 sigma, reported for compressed powder sample.
ThermoelectricUnspecified subtype
2020 · Nanorods of a novel highly conductive 2D metal-organic framework based on perthiolated coronene for thermoelectric conversion
Ni-PTC compressed cuboid pellet for electrical conductivity and Seebeck measurements · Pellet · SB-100 Seebeck Measurement System; compressed cuboid pellets.
ThermoelectricUnspecified subtype
2020 · Nanorods of a novel highly conductive 2D metal-organic framework based on perthiolated coronene for thermoelectric conversion
Ni-PTC columned pellet for thermal conductivity measurements · Pellet · ZT estimated for compressed powder sample from measured sigma, S and kappa.
ThermoelectricUnspecified subtype
2020 · Paramagnetic Conducting Metal–Organic Frameworks with Three-Dimensional Structure
Fe-THBQ pressed cuboid pellet · Pellet · PPMS system, 300-390 K; reported as stable in air.
ThermoelectricUnspecified subtype
2020 · Unique Thermoelectric Properties Induced by Intrinsic Nanostructuring in a Polycrystalline Thin-Film Two-Dimensional Metal–Organic Framework, Copper Benzenehexathiol
Cu-BHT Seebeck/electrical devices 5-7 · Thin Film · Extra leads generate a temperature gradient for Seebeck measurement; S and sigma measured on Devices 5, 6, and 7.
ThermoelectricUnspecified subtype
2018 · Highly Conducting Neutral Coordination Polymer with Infinite Two-Dimensional Silver-Sulfur Networks
free-standing Ag-BHT film · Thin Film · Ag-BHT film kept in a temperature-variable dewar under vacuum below 10 mTorr.
ThermoelectricUnspecified subtype
2018 · Polyethenetetrathiolate or polytetrathiooxalate? Improved synthesis, a comparative analysis of a prominent thermoelectric polymer and implications to the charge transport mechanism
P3 poly[Ni-tto] · Pellet · More than 30 P3 batches; SI Fig. SA5 shows scatter.
ThermoelectricUnspecified subtype
2018 · Polyethenetetrathiolate or polytetrathiooxalate? Improved synthesis, a comparative analysis of a prominent thermoelectric polymer and implications to the charge transport mechanism
P1 poly[Kx(Ni-ett)] · Pellet · Main Table 3 comparison of obtained polymers.
ThermoelectricUnspecified subtype
2018 · Polyethenetetrathiolate or polytetrathiooxalate? Improved synthesis, a comparative analysis of a prominent thermoelectric polymer and implications to the charge transport mechanism
P1methanol poly[Kx(Ni-ett)] · Pellet · Main Table 3 comparison of obtained polymers; ambient pellet measurements unless temperature dependence under vacuum is specified.
ThermoelectricUnspecified subtype
2018 · Polyethenetetrathiolate or polytetrathiooxalate? Improved synthesis, a comparative analysis of a prominent thermoelectric polymer and implications to the charge transport mechanism
P2 strongly charged poly[Kx(Ni-ett)] · Pellet · Main Table 3 comparison of obtained polymers.
ThermoelectricUnspecified subtype
2018 · Polyethenetetrathiolate or polytetrathiooxalate? Improved synthesis, a comparative analysis of a prominent thermoelectric polymer and implications to the charge transport mechanism
P2-ox post-polymerisation oxidised poly[Kx(Ni-ett)] · Pellet · Main Table 3 comparison of obtained polymers.
ThermoelectricUnspecified subtype
2018 · Polyethenetetrathiolate or polytetrathiooxalate? Improved synthesis, a comparative analysis of a prominent thermoelectric polymer and implications to the charge transport mechanism
P3 poly[Ni-tto] · Pellet · Main Table 3 comparison of obtained polymers and Fig. 1 temperature dependence.
ThermoelectricUnspecified subtype
2018 · Polyethenetetrathiolate or polytetrathiooxalate? Improved synthesis, a comparative analysis of a prominent thermoelectric polymer and implications to the charge transport mechanism
P1 poly[Kx(Ni-ett)] · Pellet · Compressed pellets measured at 300-380 K; figure-only series.
ThermoelectricUnspecified subtype
2018 · Polyethenetetrathiolate or polytetrathiooxalate? Improved synthesis, a comparative analysis of a prominent thermoelectric polymer and implications to the charge transport mechanism
P1methanol poly[Kx(Ni-ett)] · Pellet · Compressed pellets measured at 300-380 K; figure-only series.
ThermoelectricUnspecified subtype
2018 · Polyethenetetrathiolate or polytetrathiooxalate? Improved synthesis, a comparative analysis of a prominent thermoelectric polymer and implications to the charge transport mechanism
P3 poly[Ni-tto] · Pellet · Compressed pellets measured at 300-380 K; hysteresis observed.
ThermoelectricUnspecified subtype
2018 · Polyethenetetrathiolate or polytetrathiooxalate? Improved synthesis, a comparative analysis of a prominent thermoelectric polymer and implications to the charge transport mechanism
P3 annealed poly[Ni-tto] · Pellet · P3 pellet annealed 1 h at 110 C before 300-380 K measurements.
ThermoelectricUnspecified subtype
2017 · A Microporous and Naturally Nanostructured Thermoelectric Metal-Organic Framework with Ultralow Thermal Conductivity
pressed pellet of Ni3(HITP)2 · Pellet · 6 mm diameter, 1.8 mm thick pellet sandwiched between hot junction heater assembly and cold junction electrode; silver paste contacts; desolvated at 150 C for 2 h; thermal voltage slope versus temperature difference from multiple input heater powers.
ThermoelectricUnspecified subtype
2017 · A Microporous and Naturally Nanostructured Thermoelectric Metal-Organic Framework with Ultralow Thermal Conductivity
tentative thin films of Ni3(HITP)2 · Thin Film · Thin film measurement mentioned in discussion; method details not reported.
ThermoelectricUnspecified subtype
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 · Homemade device assembled from voltmeter probes, aluminium contacts, glass substrate and a Peltier element.
ThermoelectricUnspecified subtype
2017 · Two-dimensional metal-organic frameworks with high thermoelectric efficiency through metal ion selection
Ni3(HITP)2 multilayer computational model · Model · Multilayer thin-film-like model; metallic multilayer behaviour compared with semiconducting monolayer.
ThermoelectricUnspecified subtype
2015 · A two-dimensional π-d conjugated coordination polymer with extremely high electrical conductivity and ambipolar transport behaviour
General Cu-BHT thin-film samples · Thin Film · Two 30 nm gold electrodes separated by 5 mm on Cu-BHT film transferred to SiO2; Peltier cooler/heater applied temperature gradient; temperature difference by FLIR A300 thermal camera and thermoelectric potential by Keithley 4200 SCS.
ThermoelectricUnspecified subtype
2015 · Thin film thermoelectric metal-organic framework with high seebeck coefficient and low thermal conductivity
TCNQ-infiltrated Cu3(BTC)2 thin-film region A on quartz · Thin Film · Power factor p = S^2 sigma evaluated over the 10-40 deg C temperature range.
ThermoelectricUnspecified subtype
2015 · Thin film thermoelectric metal-organic framework with high seebeck coefficient and low thermal conductivity
TCNQ-infiltrated Cu3(BTC)2 thin-film region A on quartz · Thin Film · Two Peltier heaters/coolers established a thermal gradient; local temperature measured by IR camera; thermovoltage measured by voltage meter.
ThermoelectricUnspecified subtype
2012 · Organic thermoelectric materials and devices based on p- and n-type poly(metal 1,1,2,2-ethenetetrathiolate)s
poly[(Bu4N)x(Ni-ett)] · Pellet · Corrected Table 1 values at 300 K.
ThermoelectricUnspecified subtype
2012 · Organic thermoelectric materials and devices based on p- and n-type poly(metal 1,1,2,2-ethenetetrathiolate)s
poly[(C14Me3N)x(Ni-ett)] · Pellet · Corrected Table 1 values at 300 K.
ThermoelectricUnspecified subtype
2012 · Organic thermoelectric materials and devices based on p- and n-type poly(metal 1,1,2,2-ethenetetrathiolate)s
poly[Cux(Cu-ett)] black powder / compressed cuboid · Pellet · Corrected Table 1 values at 300 K.
ThermoelectricUnspecified subtype
2012 · Organic thermoelectric materials and devices based on p- and n-type poly(metal 1,1,2,2-ethenetetrathiolate)s
poly[Kx(Ni-ett)] · Pellet · Corrected Table 1 values at 300 K.
ThermoelectricUnspecified subtype
2012 · Organic thermoelectric materials and devices based on p- and n-type poly(metal 1,1,2,2-ethenetetrathiolate)s
poly[Nax(Cu-ett)] · Pellet · Corrected Table 1 values at 300 K.
ThermoelectricUnspecified subtype
2012 · Organic thermoelectric materials and devices based on p- and n-type poly(metal 1,1,2,2-ethenetetrathiolate)s
poly[Nax(Ni-ett)] black powder / compressed cuboid · Pellet · Corrected Table 1 values at 300 K.
ThermoelectricUnspecified subtype
2012 · Organic thermoelectric materials and devices based on p- and n-type poly(metal 1,1,2,2-ethenetetrathiolate)s
poly[Nix(Ni-ett)] · Pellet · Corrected Table 1 values at 300 K.
ThermoelectricUnspecified subtype
2012 · Organic thermoelectric materials and devices based on p- and n-type poly(metal 1,1,2,2-ethenetetrathiolate)s
poly[Cux(Cu-ett)] black powder / compressed cuboid · Pellet · Measured from about 230 to 400 K for ZT range reported; Figure 2 includes comparative trends.
ThermoelectricUnspecified subtype
2012 · Organic thermoelectric materials and devices based on p- and n-type poly(metal 1,1,2,2-ethenetetrathiolate)s
poly[Kx(Ni-ett)] · Pellet · Measured from 220 to 440 K; TGA limited measurements above 440 K.
ThermoelectricUnspecified subtype
2012 · Organic thermoelectric materials and devices based on p- and n-type poly(metal 1,1,2,2-ethenetetrathiolate)s
poly[Nax(Ni-ett)] black powder / compressed cuboid · Pellet · Measured from 220 to 440 K; TGA limited measurements above 440 K.
No mapped measurement matches these filters.