Reinforced concrete-like Na3.5V1.5Mn0.5(PO4)3 @graphene hybrids with hierarchical porosity as durable and high-rate sodium-ion battery cathode

Tao Long,Peng Chen, Bin Feng,Caili Yang, Kairong Wang, Yulei Wang, Can Chen,Yaping Wang, Ruotong Li,Meng Wu,Minhuan Lan,Wei Kong Pang,Jian-Fang Wu,Yuan -Li Ding

CHINESE CHEMICAL LETTERS(2024)

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摘要
Realizing high -rate capability and high -efficiency utilization of polyanionic cathode materials is of great importance for practical sodium -ion batteries (SIBs) since they usually suffer from extremely low electronic conductivity and limited ionic diffusion kinetics. Herein, taking Na3.5V1.5Mn0.5(PO4)3 (NVMP) as an example, a reinforced concrete -like hierarchical and porous hybrid (NVMP@C@3DPG) built from 3D graphene ("rebar") frameworks and in situ generated carbon coated NVMP ("concrete") has been developed by a facile polymer assisted self -assembly and subsequent solid-state method. Such hybrids deliver superior rate capability (73.9 mAh/g up to 20 C) and excellent cycling stability in a wide temperature range with a high specific capacity of 88.4 mAh/g after 50 0 0 cycles at 15 C at room temperature, and a high capacity retention of 97.1% after 500 cycles at 1 C (-20 degrees C), and maintaining a high reversible capacity of 110.3 mAh/g in full cell. This work offers a facile and efficient strategy to develop advanced polyanionic cathodes with high -efficiency utilization and 3D electron/ion transport systems. (c) 2024 Published by Elsevier B.V. on behalf of Chinese Chemical Society and Institute of Materia Medica, Chinese Academy of Medical Sciences.
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关键词
Sodium -ion battery,Polyanionic cathode,Hybrid structure,Interconnected structure,Energy storage
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