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With funding from projects such as the National Natural Science Foundation of China, Associate Professor Zhang Wei, Professor Xiong Shiyun, and Professor Huang Shaoming of the School of Materials and Energy at Guangdong University of Technology have made significant progress in the field of anode materials for sodium-ion batteries. The relevant results were recently published in “Advanced Materials”. For the first time, the study revealed the intrinsic mechanism of polyselenide transformation and shuttle from the perspective of Lewis acid-base catalysis, and proposed a new paradigm of “electronic structure control - double site autocatalysis - crystal lattice buffering”, which provides new ideas for developing ultra-long-life metal selenide anode materials, and is of great significance in promoting the practical application of sodium-ion batteries in the field of large-scale energy storage.

Zhitongcaijing·07/26/2026 00:41:01
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With funding from projects such as the National Natural Science Foundation of China, Associate Professor Zhang Wei, Professor Xiong Shiyun, and Professor Huang Shaoming of the School of Materials and Energy at Guangdong University of Technology have made significant progress in the field of anode materials for sodium-ion batteries. The relevant results were recently published in “Advanced Materials”. For the first time, the study revealed the intrinsic mechanism of polyselenide transformation and shuttle from the perspective of Lewis acid-base catalysis, and proposed a new paradigm of “electronic structure control - double site autocatalysis - crystal lattice buffering”, which provides new ideas for developing ultra-long-life metal selenide anode materials, and is of great significance in promoting the practical application of sodium-ion batteries in the field of large-scale energy storage.