Other — Field effect transistor based on proton conductive metal organic framework (CuBTC)

Measurement evidence

Other

Field effect transistor based on proton conductive metal organic framework (CuBTC) · Bodkhe G.A., Deshmukh M.A., Patil H.K. et al. · Journal of Physics D: Applied Physics · 2019 · 335105

1 measurement group · 5 results

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

Thermogravimetric analysis (TGA/TGDTA)

Im@CuBTC powder/crystals · Powder

CuBTC and Im@CuBTC heated in nitrogen at 10 C min^-1.

Atmosphere
nitrogen
Context
Im@CuBTC compared against pristine CuBTC control.
Measurement source
rendered pages 5 and 7 / article pp. 4 and 6 · 2.5; 3. Results and discussion · Figure 8
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
CuBTC coordinated DMF weight loss3.98% between 129 C and 322 CText
Exact Reported
rendered page 7 / article p. 6 · 3. Results and discussion · Figure 8
CuBTC framework decomposition weight lossapprox. 46% between 322 C and 600 Capprox.Text
Approximate
rendered pages 7 and 9 / article pp. 6 and 8 · 3. Results and discussion · Figure 8
CuBTC thermal stability limitthermally stable up to 322 C595.15 KText
Exact Reported
rendered page 9 / article p. 8 · 3. Results and discussion · Figure 8
CuBTC low-temperature weight loss11.41% between 49 C and 129 CText
Exact Reported
rendered page 7 / article p. 6 · 3. Results and discussion · Figure 8
Im@CuBTC onset of high weight losshigh weight loss starts above 256 C529.15 KText
Exact Reported
rendered page 9 / article p. 8 · 3. Results and discussion · Figure 8