Other — Self-assembly and optoelectronic properties of isoreticular MOF nanocrystals

Measurement evidence

Other

Self-assembly and optoelectronic properties of isoreticular MOF nanocrystals · Dawood S., Yarbrough R., Davis K. et al. · Synthetic Metals · 2019 · 107-112

1 measurement group · 9 results

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

Thermogravimetric analysis (Q500)

off-white crystalline IRMOF-8 microstructure powder · Powder

Heated up to 700 C at 10 C/min in nitrogen gas flow.

Atmosphere
nitrogen gas flow
Context
pristine framework powder
Measurement source
108 · 2.1. Materials · Figure S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
first TGA weight-loss temperature200 C473.15 KText
Exact Reported
109 · 3.1. Synthesis and characterization · Figure S1
first TGA weight lossless than 10%10 wt%<10%Text
Approximate
109 · 3.1. Synthesis and characterization · Figure S1
second TGA weight-loss temperature340 C613.15 KText
Exact Reported
109 · 3.1. Synthesis and characterization · Figure S1
second TGA weight loss40%40 wt%Text
Exact Reported
109 · 3.1. Synthesis and characterization · Figure S1
third TGA weight-loss temperature upper bound440-500 C773.15 KText
Range
109 · 3.1. Synthesis and characterization · Figure S1
third TGA weight-loss temperature lower bound440-500 C713.15 KText
Range
109 · 3.1. Synthesis and characterization · Figure S1
third TGA weight loss50% weight loss50 wt%Text
Exact Reported
109 · 3.1. Synthesis and characterization · Figure S1
visual residual mass near end of TGA runapproximately 3 wt% at 700 C from SI Figure S13 wt%visual estimate from rendered TGA curveVisual Estimate
Approximate
SI page 1 · Figure S1 · Figure S1
thermal stability limitthermally stable up to 350 C623.15 KText
Exact Reported
109 · 3.1. Synthesis and characterization · Figure S1