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用于快速稳定的钠/钾存储的MoSe/VSe@NC纳米花中异质界面和结构的双重工程

Dual engineering of hetero-interfaces and architecture in MoSe/VSe@NC nanoflower for fast and stable sodium/potassium storage.

作者信息

Kang Wenpei, Mou Zhenkai, Hu Xuqiang, Fan Xiaoyu, Sun Daofeng

机构信息

School of Materials Science and Engineering, China University of Petroleum (East China), Qingdao 266580, PR China.

School of Materials Science and Engineering, China University of Petroleum (East China), Qingdao 266580, PR China.

出版信息

J Colloid Interface Sci. 2024 Jul 15;666:1-11. doi: 10.1016/j.jcis.2024.03.167. Epub 2024 Mar 26.

Abstract

Rational structure design is significant for the selenide anodes in the sodium/potassium ion batteries (SIBs/PIBs). Herein, dual engineering of hetero-interfaces and architecture is proposed to design SIB/PIB anodes. Attributed to the coordination binding with MoO and VO, the polydopamine assembly is demonstrated as an ideal template to produce bimetallic selenide of MoSe/VSe anchoring on the in-situ N-doped carbon matrix (MoSe/VSe@NC). This ingenious hierarchical nanoflower structure can shorten the Na/K diffusion length, increase the electron conductivity and buffer the volume changes, which can promote Na/K reaction kinetics and stabilize the cycling performance. Consequently, the sodium/ potassium storage performance of MoSe/VSe@NC can be boosted. In SIBs, it achieves a capacity of 202 mAh/g at 10.0 A/g for 5000 cycles. Meanwhile, stable capacities of 207.1 mAh/g can be reached at 1.0 A/g over 1000 cycles in the PIBs. Furthermore, impressive capacities of 222.1 mAh/g and 100.4 mAh/g are delivered in the full cells of MoSe/VSe@NC//NaV(PO4)@C and MoSe/VSe@NC//FePBA, respectively. This proves the potential practical application for the MoSe/VSe@NC anode in SIBs/PIBs.

摘要

合理的结构设计对于钠/钾离子电池(SIBs/PIBs)中的硒化物负极具有重要意义。在此,提出了异质界面和结构的双重工程来设计SIB/PIB负极。由于与MoO和VO的配位结合,聚多巴胺组装体被证明是制备锚定在原位N掺杂碳基体上的MoSe/VSe双金属硒化物(MoSe/VSe@NC)的理想模板。这种巧妙的分级纳米花结构可以缩短Na/K扩散长度,提高电子导电性并缓冲体积变化,从而促进Na/K反应动力学并稳定循环性能。因此,MoSe/VSe@NC的钠/钾存储性能可以得到提升。在SIBs中,它在10.0 A/g下循环5000次时容量达到202 mAh/g。同时,在PIBs中,在1.0 A/g下循环1000次时可以达到207.1 mAh/g的稳定容量。此外,MoSe/VSe@NC//NaV(PO4)@C和MoSe/VSe@NC//FePBA的全电池分别实现了222.1 mAh/g和100.4 mAh/g的令人印象深刻的容量。这证明了MoSe/VSe@NC负极在SIBs/PIBs中的潜在实际应用价值。

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