Zhou Xiaozhong, Qi Zhaoyi, Wang Aixia, Liu Dongxu, Dong Kaifa, Lei Ziqiang
Key Laboratory of Eco-functional Polymer Materials of the Ministry of Education, Key Laboratory of Eco-environmental Polymer Materials of Gansu Province, College of Chemistry and Chemical Engineering, Northwest Normal University, Lanzhou 730070, People's Republic of China.
ACS Appl Mater Interfaces. 2022 Apr 6;14(13):15122-15132. doi: 10.1021/acsami.1c24084. Epub 2022 Mar 25.
SiO is a promising anode material for next-generation lithium-ion batteries, with high energy density and low cost. However, several issues, such as poor cycling stability, should be overcome before practical application. Here, gum arabic, a well-known natural gum with low cost, is used as a carbon source to form a uniform Co-inlaid carbon coating on SiO by a facile and scalable self-assembly method using Co as a "bridge", during which Co plays a key role. After carbonization treatment, the Co-inlaid carbon coating can effectively mitigate volume effects, enhance electrical conductivity, boost deep delithiation processes, and guarantee the structural integrity of SiO-Co@C. Because of the unique Co-inlaid carbon coating, the SiO-Co@C electrode displays much improved lithium-storage properties. The charging capacity of the SiO-Co@C electrode at the 250th cycle is 1010.8 mA h g with 84% capacity retention at 200 mA g. This work presents a facile and efficient strategy to construct a uniform multifunctional coating for improved electrochemical properties.
SiO是下一代锂离子电池极具前景的负极材料,具有高能量密度和低成本的特点。然而,在实际应用之前,还需克服诸如循环稳定性差等若干问题。在此,阿拉伯胶作为一种广为人知的低成本天然胶,被用作碳源,通过一种简便且可扩展的自组装方法,以Co为“桥梁”在SiO上形成均匀的Co镶嵌碳涂层,在此过程中Co起到关键作用。经过碳化处理后,Co镶嵌碳涂层能够有效减轻体积效应、提高电导率、促进深度脱锂过程,并保证SiO-Co@C的结构完整性。由于独特的Co镶嵌碳涂层,SiO-Co@C电极展现出大大改善的储锂性能。SiO-Co@C电极在第250次循环时的充电容量为1010.8 mA h g,在200 mA g下容量保持率为84%。这项工作提出了一种简便高效的策略,用于构建均匀的多功能涂层以改善电化学性能。