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Covalent-organic frameworks: potential host materials for sulfur impregnation in lithium-sulfur batteries

机译:共价-有机框架:锂硫电池中硫浸渍的潜在主体材料

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Commercial development of lithium-sulfur (Li-S) batteries is severely hindered by their insufficient cyclability, which is due to the loss of soluble lithium polysulfide intermediates generated during the discharge processes. To overcome this problem, considerable efforts have been devoted to designing novel micro-or nano-structured host materials, aiming to trap soluble polysulfide within the network. Herein, we report a new approach to construct a sulfur electrode by impregnating sulfur into the nanopores of covalent-organic frameworks (COFs). Our results clearly demonstrate that by using a 2D COF as a host material, e.g. CTF-1 (CTF: covalent triazine-based framework), the thus-prepared cathode can show a remarkable positive effect on the capacity retention of Li-S batteries. Considering the unique features of COFs, such as highly flexible molecular design and a controllable pore size, this proof-of-principle study provides new opportunities for materials scientists for tailoring cathode materials in Li-S batteries.
机译:锂-硫(Li-S)电池的商业发展因其循环能力不足而受到严重阻碍,这是由于在放电过程中产生的可溶性多硫化锂中间体的损失所致。为了克服这个问题,已经致力于设计新颖的微或纳米结构主体材料,以将可溶的多硫化物捕获在网络中。在此,我们报告了一种通过将硫浸渍到共价有机骨架(COFs)的纳米孔中来构造硫电极的新方法。我们的结果清楚地表明,通过使用2D COF作为主体材料,例如如此制备的阴极CTF-1(CTF:基于共价三嗪的骨架)可以对Li-S电池的容量保持率显示出显着的积极影响。考虑到COF的独特功能,例如高度灵活的分子设计和可控制的孔径,这项原理验证研究为材料科学家提供了在Li-S电池中定制正极材料的新机会。

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