Other — The Advent of Electrically Conducting Double-Helical Metal-Organic Frameworks Featuring Butterfly-Shaped Electron-Rich π-Extended Tetrathiafulvalene Ligands

Measurement evidence

Other

The Advent of Electrically Conducting Double-Helical Metal-Organic Frameworks Featuring Butterfly-Shaped Electron-Rich π-Extended Tetrathiafulvalene Ligands · Gordillo M.A., Benavides P.A., Panda D.K. et al. · ACS Applied Materials and Interfaces · 2020 · 12955-12961

4 measurement groups · 10 results

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

Elemental analysis

1a, iodine-treated washed evacuated dhMOF · Powder

Elemental composition of 1a used to estimate ExTTFTB radical cation and iodide stoichiometry

Context
iodine-treated partially oxidised framework
Measurement source
4 · Elemental Analysis of Pristine and Iodine-Treated dhMOFs · Figure 1c
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Elemental carbon content of 1aC 52.78%Text
Exact Reported
4 · Elemental Analysis
Empirical formula of 1aZn3C100H78O26S8IText
Exact Reported
4 · Elemental Analysis
ExTTFTB to iodide ratio in 1aExTTFTB:I- = 2:1Text
Exact Reported
4 · Elemental Analysis · Figure 1c
Elemental hydrogen content of 1aH 3.59%Text
Exact Reported
4 · Elemental Analysis
Elemental iodine content of 1aI 5.91%Text
Exact Reported
4 · Elemental Analysis
Elemental sulphur content of 1aS 10.84%Text
Exact Reported
4 · Elemental Analysis

Thermogravimetric analysis coupled with differential scanning calorimetry (TGA/DSC)

1, activated pristine dhMOF · Powder

Thermal analysis of pristine 1; SI: conducted under N2 atmosphere using an SDT Q600 instrument

Atmosphere
N2
Context
pristine framework thermal stability
Measurement source
S-2 · General Materials and Methods
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Thermal plateau upper temperature for 1steady until 350 deg CText
Rounded Reported
3 · Synthesis and Structural Characterization · Figure 2b
Initial TGA weight loss for 110% before 200 deg CText
Rounded Reported
3 · Synthesis and Structural Characterization · Figure 2b

Thermogravimetric analysis coupled with differential scanning calorimetry (TGA/DSC)

1a, iodine-treated washed evacuated dhMOF · Powder

Thermal analysis of iodine-treated, washed 1a; SI: conducted under N2 atmosphere using an SDT Q600 instrument

Atmosphere
N2
Context
iodine-treated partially oxidised framework
Measurement source
S-2 · General Materials and Methods
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Initial TGA weight loss for 1a10% between 50 and 100 deg CText
Rounded Reported
3 · Synthesis and Structural Characterization · Figure 2b

Thermogravimetric analysis coupled with differential scanning calorimetry (TGA/DSC)

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

Atmosphere
N2
Context
iodine-treated framework with residual iodine
Measurement source
S-2 · General Materials and Methods
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Residual-iodine-associated TGA weight loss for 1b17% between 50 and 150 deg CText
Rounded Reported
3 · Synthesis and Structural Characterization · Figure 2b