Probing the electronic and ionic transport in topologically distinct redox-active metal-organic frameworks in aqueous electrolytes
Shen C.-H., Chen Y.-H., Wang Y.-C. et al. · Physical Chemistry Chemical Physics · 2022
Reported here: MOF-808
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Shen C.-H., Chen Y.-H., Wang Y.-C. et al. · Physical Chemistry Chemical Physics · 2022
Reported here: MOF-808
Somjit V., Thinsoongnoen P., Waiprasoet S. et al. · ACS Applied Materials and Interfaces · 2021
Reported here: MOF-808
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| Paper and reported name | Formula and components | Structure context | Source |
|---|---|---|---|
| MOF-8082022 · Probing the electronic and ionic transport in topologically distinct redox-active metal-organic frameworks in aqueous electrolytes | Not specifiedHexa-zirconium nodes with terminal -OH/-OH2 groups and coordinated formate reported from prior same-procedure work. · Trimesic acid / BTC linker from H3BTC. | 3D · PristineZr-MOF with network-like pore structure and main pore size around 1.7 nm. | 9858 · Results and discussion - Materials characterization · Figure 2 |
| MOF-8082021 · Processable UiO-66 Metal-Organic Framework Fluid Gel and Electrical Conductivity of Its Nanofilm with Sub-100 nm Thickness | Zr-BTC MOFZr-based clusters · 1,3,5-benzenetricarboxylate / trimesate | 3D · PristineZr-based MOF with topology different from UiO-66; fluid-gel structure preserved by GIXRD. | p005 / 30848 · Results and Discussion · Figure 4d; Figure S6 |