Thermoelectric — Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design

Measurement evidence

Thermoelectric

Controlling the Thermoelectric Properties of Organometallic Coordination Polymers via Ligand Design · Liu Z., Liu T., Savory C.N. et al. · Advanced Functional Materials · 2020 · 2003106

7 measurement groups · 25 results

Reported values remain attached to the sample, method, conditions, extraction quality and source location that produced them.

Raman thermometry

annealed Ni-diett freestanding pellet · Pellet

Single laser used as heater and thermometer; representative Raman spectra at different absorbed powers for Ni-diett and calibrated temperature rise vs absorbed power for each OMCP.

Geometry
freestanding pellet
Context
pristine framework pellet
Measurement source
9 · Figure 5 · Figure 5
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Raman thermometry peak shiftPeaks around 360 and 490 cm-1 exhibit largest bathochromic shift as absorbed power increasesCaption
Rounded Reported
9 · Figure 5 caption · Figure 5

Electrical conductivity, Seebeck coefficient, Raman thermometry thermal conductivity, power factor and zT

annealed Ni-btt freestanding pellet · Pellet

Average thermoelectric properties at 305 K after annealing at 150 degC for 5 h in air.

Temperature
305
Atmosphere
air anneal before measurement
Geometry
freestanding compressed pellet
Context
annealed pristine framework pellet, no binder
Measurement source
9 · 3 Conclusion · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Seebeck coefficient at 305 K12.7 +/- 1.2+/- 1.2Table
Exact Reported
9 · 3 Conclusion · Table 2
thermal conductivityMarked as a best value within this paper1.2 +/- 0.5+/- 0.5Table
Exact Reported
9 · 3 Conclusion · Table 2
power factor0.12 +/- 0.02+/- 0.02Table
Exact Reported
9 · 3 Conclusion · Table 2
electrical conductivity at 305 K7.11 +/- 0.01+/- 0.01Table
Exact Reported
9 · 3 Conclusion · Table 2
zT3 x 10-5Table
Exact Reported
9 · 3 Conclusion · Table 2

Electrical conductivity, Seebeck coefficient, Raman thermometry thermal conductivity, power factor and zT

annealed Ni-diett freestanding pellet · Pellet

Average thermoelectric properties at 305 K after annealing at 150 degC for 5 h in air.

Temperature
305
Atmosphere
air anneal before measurement
Geometry
freestanding compressed pellet
Context
annealed pristine framework pellet, no binder
Measurement source
9 · 3 Conclusion · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Seebeck coefficient at 305 K-40.2 +/- 1.6+/- 1.6Table
Exact Reported
9 · 3 Conclusion · Table 2
thermal conductivity1.5 +/- 0.4+/- 0.4Table
Exact Reported
9 · 3 Conclusion · Table 2
power factor0.94 +/- 0.08+/- 0.08Table
Exact Reported
9 · 3 Conclusion · Table 2
electrical conductivity at 305 K5.70 +/- 0.05+/- 0.05Table
Exact Reported
9 · 3 Conclusion · Table 2
zT2 x 10-4Table
Exact Reported
9 · 3 Conclusion · Table 2

Electrical conductivity, Seebeck coefficient, Raman thermometry thermal conductivity, power factor and zT

annealed Ni-ett freestanding pellet · Pellet

Average thermoelectric properties at 305 K after annealing at 150 degC for 5 h in air.

Temperature
305
Atmosphere
air anneal before measurement
Geometry
freestanding compressed pellet
Context
annealed pristine framework pellet, no binder
Measurement source
9 · 3 Conclusion · Table 2
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Seebeck coefficient at 305 K-86.1 +/- 1.2+/- 1.2Table
Exact Reported
9 · 3 Conclusion · Table 2
thermal conductivity1.7 +/- 0.2+/- 0.2Table
Exact Reported
9 · 3 Conclusion · Table 2
power factorMarked as a best value within this paper5.55 +/- 0.19+/- 0.19Table
Exact Reported
9 · 3 Conclusion · Table 2
electrical conductivity at 305 K7.49 +/- 0.05+/- 0.05Table
Exact Reported
9 · 3 Conclusion · Table 2
zTMarked as a best value within this paper1 x 10-3Table
Exact Reported
9 · 3 Conclusion · Table 2

Electrical conductivity and Seebeck coefficient vs temperature

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.

Temperature
293-385
Geometry
freestanding compressed pellet
Context
pristine framework pellet, no binder
Measurement source
8 · Figure 4 · Figure 4e,f
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni-btt pristine Seebeck coefficientaround +15 uV K-1 across measured temperature rangeText
Approximate
7 · 2.4 · Figure 4f
Ni-btt pristine conductivity at 293 K5 S cm-1 at 293 KText
Rounded Reported
7 · 2.4 · Figure 4e
Ni-btt pristine conductivity high-temperature visual maximumapproximately 9 S cm-1 near 363 KFigure Axis
Approximate
8 · Figure 4 · Figure 4e

Electrical conductivity and Seebeck coefficient vs temperature

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.

Temperature
293-385
Geometry
freestanding compressed pellet
Context
pristine framework pellet, no binder
Measurement source
8 · Figure 4 · Figure 4c,d
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni-diett pristine Seebeck coefficient near 305 K-26 uV K-1Text
Rounded Reported
7 · 2.4 · Figure 4d
Ni-diett pristine conductivity at 293 Kapproximately 2 S cm-1 at 293 KText
Approximate
7 · 2.4 · Figure 4c
Ni-diett pristine conductivity high-temperature visual maximumapproximately 8.5 S cm-1 near 363 KFigure Axis
Approximate
8 · Figure 4 · Figure 4c

Electrical conductivity and Seebeck coefficient vs temperature

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.

Temperature
293-385
Geometry
freestanding compressed pellet
Context
pristine framework pellet, no binder
Measurement source
8 · Figure 4 · Figure 4a,b
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni-ett pristine Seebeck coefficient near 305 K-26 uV K-1Text
Rounded Reported
7 · 2.4 · Figure 4b
Ni-ett pristine conductivity at 293 Kapproximately 10 S cm-1 at 293 KText
Approximate
7 · 2.4 · Figure 4a
Ni-ett pristine conductivity high-temperature visual maximumapproximately 16 S cm-1 near 355 KFigure Axis
Approximate
8 · Figure 4 · Figure 4a