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Facilitating efficient catalytic conversion of polysulfides in lithium-sulfur batteries via self-assembled hydrogen-bond-rich covalent organic frameworks

通过自组装富氢键共价有机框架促进锂硫电池中多硫化物的高效催化转化
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摘要 The widespread commercialization of lithium-sulfur(Li-S)batteries is hindered by two critical challenges:sluggish redox kinetics and the detrimental polysulfide shuttle effect.In this study,we present a novel approach utilizing hydrogen-bond-rich covalent organic frameworks(TTP@PVDF50),synthesized through an in situ self-assembly process incorporating polymeric vip species.These covalent organic frameworks(COFs),when integrated into the separators of Li-S batteries,preserve their intrinsic porosity and crystallinity,while the abundant fluorine-rich sites and well-defined pore structures enhance lithium-ion(Li^(+))transport kinetics.The hydrogen-bond-rich nature of the COFs provides an effective strategy to mitigate the polysulfide shuttle,leveraging both spatial hindrance and strong polar interactions for enhanced adsorption.Density functional theory(DFT)calculations and in situ Raman spectroscopy reveal that the F∙∙∙OH hydrogen bonding network in the TTP@PVDF50 composite significantly accelerates Li+migration and catalyzes the conversion of LiPSs.The modified separator demonstrates a high discharge capacity of 1420.2 mAh g^(–1)at 0.2 C(1 C=1675 mAh g^(–1)),alongside remarkable anti-self-discharge performance with only 9.0%capacity loss.Notably,the Li-S battery with a high sulfur loading(4.59 mg cm^(–2))and a lean electrolyte(6µL mg^(–1))retains over 83%of its capacity,underscoring the effectiveness of this strategy in advancing the performance and longevity of Li-S batteries.
作者 Yang Shi Shun Wang Peiyu Cui Jiacheng Ma Xingxing Zhang Zhuo Chen Xuehan Hou Xiao Li Xilang Jin Yanan Zhang Yaoyu Wang Wenhuan Huang 石洋;王顺;崔沛玉;马嘉呈;张星星;陈卓;侯雪晗;李笑;金洗郎;张亚男;王尧宇;黄文欢
出处 《Science Bulletin》 2025年第13期2094-2103,共10页 科学通报(英文版)
基金 supported by the National Natural Science Foundation of China(22271178) International Cooperation Key Project of Science and Technology Department of Shaanxi,China(2022KWZ-06) the Youth Talent Promotion Project of Science and Technology Association of Universities of Shaanxi Province(20210602) Research project of Xi’an Science and Technology Bureau(2022GXFW0011) Science and Technology New Star in Shaanxi Province(2023KJXX-045)。
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