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用于高性能锂硫电池的水性超分子粘合剂

Aqueous Supramolecular Binder for High-Performance Lithium-Sulfur Batteries.

作者信息

Liu Ruliang, Ou Jiaxin, Xie Lijun, Liang Yubing, Lai Xinyi, Deng Zhaoxia, Yin Wei

机构信息

School of Chemistry and Materials Science, Guangdong University of Education, Guangzhou 510303, China.

出版信息

Polymers (Basel). 2023 Jun 7;15(12):2599. doi: 10.3390/polym15122599.

Abstract

Developing an advanced electrode structure is highly important for obtaining lithium sulfur (Li-S) batteries with long life, low cost, and environmental friendliness. Some bottlenecks, such as large volume deformation and environmental pollution caused by the electrode preparation process, are still hindering the practical application of Li-S batteries. In this work, a new water-soluble, green, and environmentally friendly supramolecular binder (HUG) is successfully synthesized by modifying natural biopolymer (guar gum, GG) with HDI-UPy (cyanate containing pyrimidine groups). HUG can effectively resist electrode bulk deformation through a the unique three-dimensional nanonet-structure formed via covalent bonds and multiple hydrogen bonds. In addition, abundant polar groups of HUG have good adsorption properties for polysulfide and can inhibit the shuttle movement of polysulfide ions. Therefore, Li-S cell with HUG exhibits a high reversible capacity of 640 mAh g after 200 cycles at 1C with a Coulombic efficiency of 99%.

摘要

开发一种先进的电极结构对于获得长寿命、低成本且环境友好的锂硫(Li-S)电池至关重要。一些瓶颈,例如电极制备过程中导致的大体积变形和环境污染,仍在阻碍Li-S电池的实际应用。在这项工作中,通过用HDI-UPy(含嘧啶基团的氰酸盐)修饰天然生物聚合物(瓜尔胶,GG),成功合成了一种新型水溶性、绿色且环境友好的超分子粘合剂(HUG)。HUG可以通过经由共价键和多个氢键形成的独特三维纳米网络结构有效抵抗电极体积变形。此外,HUG丰富的极性基团对多硫化物具有良好的吸附性能,并且可以抑制多硫化物离子的穿梭运动。因此,采用HUG的Li-S电池在1C下循环200次后表现出640 mAh g的高可逆容量,库仑效率为99%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3b7/10300946/9c672b2f0f2e/polymers-15-02599-g001.jpg

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