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一维π-共轭导电金属有机骨架具有双氧化还原活性位点,用于高容量和长循环寿命水系锌电池的阴极。

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

机构信息

Key Laboratory for Advanced Ceramics and Machining Technology of Ministry of Education, School of Materials Science and Engineering, Tianjin University, Tianjin300350, People's Republic of China.

Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Science, Shenyang110016, People's Republic of China.

出版信息

ACS Nano. 2023 Feb 14;17(3):3077-3087. doi: 10.1021/acsnano.2c11974. Epub 2023 Jan 23.

Abstract

Aqueous Zn-based batteries (ZIBs) possess huge advantages in terms of high safety, low cost, and environmental friendliness. However, the lack of suitable cathodes with high-capacity, long-cycling, and high-rate capability limits their practical application. Herein, we present a highly crystalline one-dimensional π-d conjugated conductive metal-organic framework by coordinating ultrasmall 1,2,4,5-benzenetetramine (BTA) linkers with copper ions (Cu-BTA-H), as a cathode for ZIBs. The large ratio of active sites and dual redox mechanism of Cu-BTA-H, including the one-electron-redox reaction over copper ions (via Cu/Cu) and the two-electron-redox reaction over organic ligands (via C═N/C-N), effectively enhance its reversible capacity. Meanwhile, the abundant porosity, small band gap, high crystallinity, and stable coordination structure of Cu-BTA-H endow it with fast ion/electron transport and effectively hinder the dissolution of organic ligands during cycling, respectively. Consequently, Cu-BTA-H possesses a high reversible capacity of 330 mAh g at 200 mA g and excellent rate performance and long-cycle stability, with a high capacity of 106.1 mAh g at 2.0 A g after 500 cycles and a high Coulombic efficiency of ∼100%. The proposed conductive MOFs with dual redox-active sites provide an efficient approach for constructing fast, stable, and high-capacity energy storage devices.

摘要

水系锌基电池 (ZIBs) 在高安全性、低成本和环保方面具有巨大优势。然而,缺乏具有高容量、长循环和高倍率性能的合适阴极限制了它们的实际应用。在此,我们通过将超小的 1,2,4,5-苯四胺 (BTA) 配体与铜离子配位,制备了一种具有高结晶度一维π共轭导电金属有机骨架 (Cu-BTA-H),作为 ZIBs 的阴极。Cu-BTA-H 的大比表面积和双氧化还原机制,包括铜离子的单电子氧化还原反应(通过 Cu/Cu)和有机配体的两电子氧化还原反应(通过 C═N/C-N),有效提高了其可逆容量。此外,Cu-BTA-H 的丰富孔隙率、小带隙、高结晶度和稳定的配位结构分别赋予了其快速的离子/电子传输能力,并有效抑制了有机配体在循环过程中的溶解。因此,Cu-BTA-H 在 200 mA g 时具有 330 mAh g 的高可逆容量,在 2.0 A g 时具有出色的倍率性能和长循环稳定性,经过 500 次循环后仍保持 106.1 mAh g 的高容量和接近 100%的高库仑效率。具有双氧化还原活性位点的导电 MOFs 的提出为构建快速、稳定和高容量储能器件提供了一种有效方法。

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