Other — Lowering Band Gap of an Electroactive Metal-Organic Framework via Complementary Guest Intercalation

Measurement evidence

Other

Lowering Band Gap of an Electroactive Metal-Organic Framework via Complementary Guest Intercalation · Guo Z., Panda D.K., Gordillo M.A. et al. · ACS Applied Materials and Interfaces · 2017 · 32413-32417

2 measurement groups · 4 results

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

Elemental CHNS analysis

TTF-doped DSNDI-based MOF-74 powder · Powder

Elemental analysis of pristine and TTF-doped Zn-NDI-74 before and after TTF doping.

Context
Composition comparison
Measurement source
S-4 / render p004 · Table S1 · Table S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Sulfur in pristine Zn-NDI-74S absent/not reportedSI Table
Qualitative
S-4 / render p004 · Table S1 · Table S1
Sulfur found in TTF-doped Zn-NDI-74Marked as a best value within this paperS found = 3.40 wt%SI Table
Exact Reported
S-4 / render p004 · Table S1 · Table S1

TGA/DSC

TTF-doped DSNDI-based MOF-74 powder · Powder

TGA and DSC analysis under N2 comparing undoped and TTF-doped MOF-74.

Atmosphere
N2
Context
Thermal stability comparison
Measurement source
p002 / article p.32414 · Main text · Figure S4
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Pristine DSC phase-transition stabilityMarked as a best value within this paperno phase transition until 380 °C653.15 KText
Rounded Reported
p002 / article p.32414 · Main text · Figure S4
TTF-loaded DSC phase-transition stabilityMarked as a best value within this paperremained unaffected until 420 °C693.15 KText
Rounded Reported
p002 / article p.32414 · Main text · Figure S4