Other — A Rationally Designed Iron–Dihydroxybenzoquinone Metal–Organic Framework as Practical Cathode Material for Rechargeable Batteries

Measurement evidence

Other

A Rationally Designed Iron–Dihydroxybenzoquinone Metal–Organic Framework as Practical Cathode Material for Rechargeable Batteries · Cai T., Hu Z., Gao Y. et al. · Energy Storage Materials · 2022 · 426-434

1 measurement group · 8 results

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

Thermogravimetric analysis

air-stabilised Fe2(DHBQ)3 powder · Powder

TG under nitrogen and air at 10 C min-1.

Atmosphere
air and nitrogen
Context
pristine powder
Measurement source
428 · 2.1. Synthesis and characterization · Fig. 1f
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Decomposition temperature in airabout 200 C in airText
Approximate
428 · 2.1 · Fig. 1f
Decomposition temperature in nitrogenabout 350 C in nitrogenText
Approximate
428 · 2.1 · Fig. 1f
Fe content by ICP-OES20.0 wt%Text
Exact Reported
428 · 2.1
Fe content calculated from TG/Fe2O3 residue19.4 wt% FeCalculated From Reported
Rounded Reported
428 · 2.1 · Fig. 1f, Fig. S4
Fe content in proposed formulaFe content 19.9 wt% in Fe2(C6H2O4)3.2H2OCalculated From Reported
Rounded Reported
428 · 2.1
Water content in proposed formulaH2O content 6.4 wt% in Fe2(C6H2O4)3.2H2OCalculated From Reported
Rounded Reported
428 · 2.1
Residual weight at 600 C after calcination27.7% at 600 CText
Exact Reported
428 · 2.1 · Fig. 1f, Fig. S4
Minor mass loss assigned to absorbed waterapproximately 6.8% in air before the major lossText
Approximate
428 · 2.1 · Fig. 1f