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A High-Rate and Ultrastable Re2Te5/MXene Anode for Potassium Storage Enabled by Amorphous/Crystalline Heterointerface Engineering.
Wu, Bangjun; Zhang, Yelong; Wang, Zhongquan; Wang, Zhonghua; Dong, Zhen; Zeng, Qingguang; Hui, Kwun Nam; Liu, Zheng; Peng, Zhangquan.
Afiliação
  • Wu B; School of Applied Physics and Materials, Wuyi University, Jiangmen, Guangdong, 529020, China.
  • Zhang Y; School of Applied Physics and Materials, Wuyi University, Jiangmen, Guangdong, 529020, China.
  • Wang Z; School of Applied Physics and Materials, Wuyi University, Jiangmen, Guangdong, 529020, China.
  • Wang Z; School of Applied Physics and Materials, Wuyi University, Jiangmen, Guangdong, 529020, China.
  • Dong Z; School of Applied Physics and Materials, Wuyi University, Jiangmen, Guangdong, 529020, China.
  • Zeng Q; School of Applied Physics and Materials, Wuyi University, Jiangmen, Guangdong, 529020, China.
  • Hui KN; Laboratory of Advanced Spectro-Electrochemistry and Lithium-Ion Batteries, Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, Liaoning, 116023, China.
  • Liu Z; School of Applied Physics and Materials, Wuyi University, Jiangmen, Guangdong, 529020, China.
  • Peng Z; School of Applied Physics and Materials, Wuyi University, Jiangmen, Guangdong, 529020, China.
Adv Mater ; : e2407134, 2024 Sep 13.
Article em En | MEDLINE | ID: mdl-39267461
ABSTRACT
The pursuit of anode materials capable of rapid and reversible potassium storage performance is a challenging yet fascinating target. Herein, a heterointerface engineering strategy is proposed to prepare a novel superstructure composed of amorphous/crystalline Re2Te5 anchored on MXene substrate (A/C-Re2Te5/MXene) as an advanced anode for potassium-ion batteries (KIBs). The A/C-Re2Te5/MXene anode exhibits outstanding reversible capacity (350.4 mAh g-1 after 200 cycles at 0.2 A g-1), excellent rate capability (162.5 mAh g-1 at 20 A g-1), remarkable long-term cycling capability (186.1 mAh g-1 at 5 A g-1 over 5000 cycles), and reliable operation in flexible full KIBs, outperforming state-of-the-art metal chalcogenides-based devices. Experimental and theoretical investigations attribute this high performance to the synergistic effect of the A/C-Re2Te5 with a built-in electric field and the elastic MXene, enabling improved pseudocapacitive contribution, accelerated charge transfer behavior, and high K+ ion adsorption/diffusion ability. Meanwhile, a combination of intercalation and conversion reactions mechanism is observed within A/C-Re2Te5/MXene. This work offers a new approach for developing metal tellurides- and MXene-based anodes for achieving stable cyclability and fast-charging KIBs.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article