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增强MnO中锌/氢联合电荷存储:同时调整锰的局部电子密度和氧的p带中心

Enhancing Zn/H Joint Charge Storage in MnO: Concurrently Tailoring Mn's Local Electron Density and O's p-Band Center.

作者信息

Huang Haijian, Feng Hao, He Ziyu, Huang Yanan, Xu Jiawei, Hu Chengzhi, Chen Zhangxian, Yang Zeheng, Zhang Weixin

机构信息

School of Chemistry and Chemical Engineering, Hefei University of Technology, 230009 Hefei, Anhui, P. R. China.

Anhui Key Laboratory of Controllable Chemical Reaction & Material Chemical Engineering, 230009 Hefei, Anhui, P. R. China.

出版信息

ACS Nano. 2024 Sep 17;18(37):25601-25613. doi: 10.1021/acsnano.4c06672. Epub 2024 Aug 30.

Abstract

Enhancing proton storage in the zinc-ion battery cathode material of MnO holds promise in promoting its electrochemical performance by mitigating the intense Coulombic interaction between divalent zinc ions and the host structure. However, challenges persist in addressing the structural instability caused by Jahn-Teller effects and accurately modulating H intercalation in MnO. Herein, the doping of high-electronegativity Sb with fully occupied d-orbital in MnO is reported. The Sb doping strategy engenders the formation of Mn-O-Sb path in the structure with a strong dipole polarization field, which facilitates the delocalization of e orbital electron in Mn and thus mitigates the Jahn-Teller effects. Simultaneously, adjusting the level of Sb doping in MnO leads to modulation of the p-band center of O, optimizing its interaction with hydrogen and thereby enhancing proton storage. Consequently, MnO doped with 6% Sb exhibits commendable performance in both rate capability and cycling endurance, delivering 113 mAh g at 2 A g after 2000 cycles. This investigation underscores the crucial role of electronic structural engineering in elevating the electrochemical performance of cathode materials for zinc-ion batteries.

摘要

增强MnO锌离子电池正极材料中的质子存储,有望通过减轻二价锌离子与主体结构之间强烈的库仑相互作用来提升其电化学性能。然而,在解决由 Jahn-Teller 效应引起的结构不稳定性以及精确调控MnO中的氢嵌入方面,挑战依然存在。在此,报道了在MnO中掺杂具有完全占据d轨道的高电负性Sb。Sb掺杂策略促使结构中形成具有强偶极极化场的Mn-O-Sb路径,这有利于Mn中e轨道电子的离域,从而减轻Jahn-Teller效应。同时,调整MnO中Sb的掺杂水平会导致O的p带中心发生调制,优化其与氢的相互作用,进而增强质子存储。因此,掺杂6% Sb的MnO在倍率性能和循环耐久性方面均表现出优异的性能,在2 A g下循环2000次后容量为113 mAh g。这项研究强调了电子结构工程在提升锌离子电池正极材料电化学性能方面的关键作用。

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