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阳离子交换的钼基多金属氧酸盐用于快速稳定锌离子存储的嵌入赝电容

Intercalation Pseudocapacitance of Cation-Exchanged Molybdenum-Based Polyoxometalate for the Fast and Stable Zinc-Ion Storage.

作者信息

Kim Hwi Jung, Yeon Jeong Seok, Park Hye Rin, Lee Sang Joon, Kim Won Il, Jang Gun, Park Ho Seok

机构信息

School of Chemical Engineering, Sungkyunkwan University, 2066, Seoburo, Jangan-gu, Suwon 440-746, Republic of Korea.

Department of Health Sciences and Technology, Samsung Advanced Institute for Health Sciences and Technology (SAIHST), Sungkyunkwan University, 2066, Seoburo, Jangan-gu, Suwon 440-746, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2023 Feb 22;15(7):9350-9361. doi: 10.1021/acsami.2c21034. Epub 2023 Feb 10.

Abstract

Recently, intercalation pseudocapacitance has received significant interest as an abnormal charge storage mechanism owing to the battery-like intercalation energy storage into the bulk electrodes and the fast charge storage kinetics of electrochemical capacitors. However, intercalation pseudocapacitance of molybdenum-based polyoxometalates (POMs) for high-performance Zn ion battery (ZIB) cathodes is yet to be exploited. Herein, we demonstrate the fast and reversible intercalation pseudocapacitance of vanadium-substituted Keggin-type molybdenum-based POMs (XPMoV), where H of HPMoV is replaced by X cations (X = Li, Na, K, or Rb). This cation exchange allows cation-exchanged XPMoV to exhibit the morphological evolution into an anisotropic rodlike structure and to achieve a pillar effect on the improved chemical and structural integrity. Despite the micron-size rod morphology and the contracted lattice of (100) plane, the intercalation pseudocapacitance kinetics of XPMoV was dominated by the fast surface-confined electrochemistry and became highly reversible after the 1st cycle activation process by co-intercalation of Li and Zn ions. Therefore, the ZIB with the KPMoV cathode delivered a high rate capability of 74.0 mAh g at 20,000 mA g and 87% capacity retention over 2000 cycles at 1000 mA g, far exceeding HPMoV and other Mo-based cathodes. This study paves the way to design the fast and reversible intercalation pseudocapacitance of POMs and the cation exchange chemistry into the improved (electro)chemical and structural integrity.

摘要

最近,嵌入赝电容作为一种异常的电荷存储机制受到了广泛关注,这是由于其具有类似电池的嵌入型 bulk 电极储能方式以及电化学电容器快速的电荷存储动力学。然而,基于钼的多金属氧酸盐(POMs)在高性能锌离子电池(ZIB)阴极中的嵌入赝电容尚未得到开发。在此,我们展示了钒取代的 Keggin 型钼基 POMs(XPMoV)的快速且可逆的嵌入赝电容,其中 HPMoV 中的 H 被 X 阳离子(X = Li、Na、K 或 Rb)取代。这种阳离子交换使阳离子交换后的 XPMoV 呈现出向各向异性棒状结构的形态演变,并在改善化学和结构完整性方面实现了柱效应。尽管 XPMoV 具有微米级的棒状形态以及(100)面的晶格收缩,但其嵌入赝电容动力学主要由快速的表面受限电化学过程主导,并且在 Li 和 Zn 离子共嵌入的第一次循环活化过程后变得高度可逆。因此,具有 KPMoV 阴极的 ZIB 在 20000 mA g 时具有 74.0 mAh g 的高倍率性能,在 1000 mA g 下 2000 次循环后容量保持率为 87%,远远超过 HPMoV 和其他基于 Mo 的阴极。这项研究为设计 POMs 的快速且可逆的嵌入赝电容以及将阳离子交换化学应用于改善(电)化学和结构完整性铺平了道路。

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