Microscopy Morphology — One-Dimensional π-d Conjugated Conductive Metal-Organic Framework with Dual Redox-Active Sites for High-Capacity and Durable Cathodes for Aqueous Zinc Batteries

Measurement evidence

Microscopy Morphology

One-Dimensional π-d Conjugated Conductive Metal-Organic Framework with Dual Redox-Active Sites for High-Capacity and Durable Cathodes for Aqueous Zinc Batteries · Sang Z., Liu J., Zhang X. et al. · ACS Nano · 2023 · 3077-3087

3 measurement groups · 6 results

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

TEM and SEM

Cu-BTA-H powder · Powder

Morphology of Cu-BTA-H powder from main Figure 1d and SI Figure S1a-c.

Context
pristine powder
Measurement source
3079 · Results and Discussion · Figure 1d; Figure S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu-BTA-H aggregate particle size upper bound50-100 nmrange upper boundText
Range
3079 · Results and Discussion · Figure 1d; Figure S1
Cu-BTA-H aggregate particle size lower bound50-100 nmrange lower boundText
Range
3079 · Results and Discussion · Figure 1d; Figure S1

TEM and SEM

Cu-BTA-L powder · Powder

Morphology of low-crystallinity Cu-BTA-L powder.

Context
pristine powder
Measurement source
3079 · Results and Discussion · Figure 1e; Figure S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Cu-BTA-L particle size upper bound20-40 nmrange upper boundText
Range
3079 · Results and Discussion · Figure 1e; Figure S1
Cu-BTA-L particle size lower bound20-40 nmrange lower boundText
Range
3079 · Results and Discussion · Figure 1e; Figure S1

TEM and SEM

Ni-BTA-H powder · Powder

Morphology of Ni-BTA-H powder.

Context
pristine powder
Measurement source
3079 · Results and Discussion · Figure 1f; Figure S1
PropertyReported valueNormalised valueUncertaintyOrigin and qualitySource
Ni-BTA-H rod diameterapproximately 10 nmText
Approximate
3079 · Results and Discussion · Figure 1f; Figure S1
Ni-BTA-H rod length lower boundover 100 nmgreater thanText
Approximate
3079 · Results and Discussion · Figure 1f; Figure S1