Harmonised techniqueNon-exclusive mapping

Seebeck and thermopower measurements

Seebeck coefficient, thermovoltage and thermopower measurements.

30primary papers
85mapped measurements
267linked results
42raw 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.

85 measurements

ThermoelectricUnspecified subtype

Seebeck coefficient measurement

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

Seebeck coefficient measurement

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

Seebeck coefficient measurement

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

Seebeck coefficient measurement.

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

Room-temperature four-probe conductivity and Seebeck coefficient

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

Seebeck coefficient and power factor

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

Seebeck coefficient and power factor

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

temperature-dependent conductivity and Seebeck coefficient under high vacuum

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

Seebeck coefficient measurement

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

Seebeck coefficient measurement versus temperature

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

Seebeck coefficient measurement versus temperature

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

Seebeck coefficient measurement versus temperature

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

Seebeck coefficient measurement versus temperature

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

Seebeck coefficient measurement

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

Steady-state Seebeck coefficient and power factor

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

Steady-state Seebeck coefficient and power factor

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

Steady-state Seebeck coefficient and power factor

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

Home-built Seebeck thermovoltage measurement

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

Home-built Seebeck thermovoltage measurement

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

Electrical conductivity and Seebeck coefficient vs temperature

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

Electrical conductivity and Seebeck coefficient vs temperature

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

Electrical conductivity and Seebeck coefficient vs temperature

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

Seebeck coefficient determination

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

Seebeck voltage versus temperature difference

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

Seebeck voltage versus temperature-gradient linear regression

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

Seebeck coefficient measurement

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

Seebeck coefficient and four-terminal electrical conductivity on same devices

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

Seebeck coefficient measurement using MMR SB-100

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

Batch-to-batch reproducibility of conductivity and Seebeck

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

Four-point conductivity, Seebeck and power factor on compressed pellets

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

Temperature-dependent conductivity and Seebeck after annealing

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

Steady-state Seebeck coefficient measurement

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

Tentative Seebeck coefficient measurement

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

Seebeck coefficient measurement

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

Thermopower under temperature gradient

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

Seebeck coefficient from thermovoltage versus temperature difference

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.

Raw method vocabulary

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

Show 42 reported method labels
Raw method labelMapped measurements
Seebeck coefficient measurement7
Elemental analysis plus 300 K electrical conductivity, Seebeck coefficient and power factor7
Four-probe electrical conductivity with Loresta-GX MCP-T700; lab-made Seebeck setup with Peltier plates6
Four-point conductivity, Seebeck and power factor on compressed pellets5
room-temperature environmental-control conductivity, Seebeck, and power-factor measurements4
Seebeck coefficient measurement versus temperature4
Steady-state Seebeck coefficient and power factor3
Temperature-dependent conductivity, Seebeck coefficient, thermal conductivity and calculated ZT3
Custom Seebeck setup; thermopower from linear regression of V-DeltaT curve3
Electrical conductivity, Seebeck coefficient, Raman thermometry thermal conductivity, power factor and zT3
Electrical conductivity and Seebeck coefficient vs temperature3
Temperature-dependent conductivity, Seebeck coefficient and power factor3
Home-built Seebeck thermovoltage measurement2
Seebeck coefficient from thermovoltage versus temperature-difference measurement.2
Power factor calculated from Seebeck coefficient and electrical conductivity2
Seebeck coefficient and power factor2
Thermopower under temperature gradient1
Seebeck coefficient determination1
Home-built Seebeck measurement system with two Peltier modules, thermocouples and voltage probes1
Seebeck voltage versus temperature difference1
Temperature-dependent Seebeck coefficient and I-V curves1
Seebeck coefficient measurement.1
Steady-state Seebeck coefficient measurement1
Tentative Seebeck coefficient measurement1
Seebeck and electrical charge transport measurements1
Room-temperature four-probe conductivity and Seebeck coefficient1
Thermovoltage measurement and Seebeck coefficient.1
Seebeck voltage versus temperature-gradient linear regression1
Figure of merit ZT calculated from Seebeck coefficient, conductivity and thermal conductivity1
Seebeck coefficient and four-terminal electrical conductivity on same devices1
temperature-dependent conductivity and Seebeck coefficient under high vacuum1
electrical conductivity, Seebeck coefficient, power factor, thermal conductivity, and ZT1
Variable-temperature Seebeck coefficient measurement1
DFT+LDA multilayer electronic band structure with calculated Seebeck coefficient.1
Seebeck coefficient from thermovoltage versus temperature difference1
Seebeck and two-point resistance in controlled N2/H2O humidity environment1
Seebeck coefficient measurement; instrument not specified in main text1
Thermal voltage measurement / Seebeck coefficient1
Batch-to-batch reproducibility of conductivity and Seebeck1
Temperature-dependent conductivity and Seebeck after annealing1
Seebeck coefficient measurement using MMR SB-1001
Electronic Seebeck coefficient from open-circuit voltage versus temperature gradient1