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- W4313908962 abstract "Two-dimensional covalent organic frameworks (COFs) have emerged as promising materials for energy storage applications exhibiting enhanced electrochemical performance. While most of the reported organic cathode materials for zinc-ion batteries use carbonyl groups as electrochemically-active sites, their high hydrophilicity in aqueous electrolytes represents a critical drawback. Herein, we report a novel and structurally robust olefin-linked COF-TMT-BT synthesized via the aldol condensation between 2,4,6-trimethyl-1,3,5-triazine (TMT) and 4,4'-(benzothiadiazole-4,7-diyl)dibenzaldehyde (BT), where benzothiadiazole units are explored as novel electrochemically-active groups. Our COF-TMT-BT exhibits an outstanding Zn2+ storage capability, delivering a state-of-the-art capacity of 283.5 mAh g-1 at 0.1 A g-1 . Computational and experimental analyses reveal that the charge-storage mechanism in COF-TMT-BT electrodes is based on the supramolecularly engineered and reversible Zn2+ coordination by the benzothiadiazole units." @default.
- W4313908962 created "2023-01-10" @default.
- W4313908962 creator A5002043712 @default.
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- W4313908962 creator A5073308269 @default.
- W4313908962 creator A5084806619 @default.
- W4313908962 date "2023-01-25" @default.
- W4313908962 modified "2023-10-09" @default.
- W4313908962 title "Supramolecular Engineering of Cathode Materials for Aqueous Zinc‐ion Energy Storage Devices: Novel Benzothiadiazole Functionalized Two‐Dimensional Olefin‐Linked COFs" @default.
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- W4313908962 doi "https://doi.org/10.1002/anie.202216136" @default.
- W4313908962 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/36625360" @default.