Waentig Albrecht L, Li Xiaodong, Zhao Meng, Haldar Sattwick, Koko Philomene, Paasch Silvia, Mueller Alina, Alvarez Karen M Garcia, Auras Florian, Brunner Eike, Schneemann Andreas, Huang Jia-Qi, Kaskel Stefan, Wang Mingchao, Feng Xinliang
Center for Advancing Electronics Dresden (CFAED) and Faculty of Chemistry and Food Chemistry, Technische Universität Dresden Mommsenstrasse 4 01069 Dresden Germany
Max Planck Institute of Microstructure Physics Weinberg 2 06120 Halle Germany.
Chem Sci. 2025 Feb 3;16(9):4152-4158. doi: 10.1039/d4sc06903j. eCollection 2025 Feb 26.
Crystalline and porous 2D poly(arylene vinylene)s (2D PAVs), vinylene-linked 2D conjugated covalent organic frameworks, represent promising materials for electronic and electrochemical applications. Chemically robust 2D PAVs with strong electron affinity are highly desirable for effective host-guest charge transfer to achieve enhanced device performance. Herein, we report the efficient synthesis and host-guest interaction of two novel 2D PAVs incorporating electron-deficient bipyrazine units with a N-free 2D PAV as a reference. They are crystalline and chemically robust. Various spectroscopies coupled with theoretical calculations indicate that the abundant N sites boost the electron affinity of 2D PAVs. We test their efficiency in hosting guest sulfur species and find that the electron-deficient materials help to physically confine and stabilize sulfur/polysulfide (, LiS) molecules with facilitated intermolecular charge transfer in the porous channels. As a result, using sulfur encapsulated by 2D PAVs as electrode materials, we achieve high specific capacities with excellent capacity retention after 200 charge-discharge cycles for Li-sulfur batteries.
晶体状且多孔的二维聚亚芳基乙烯(2D PAVs),即亚乙烯基连接的二维共轭共价有机框架,是电子和电化学应用领域颇具前景的材料。具有强电子亲和力且化学性质稳定的二维PAVs对于实现有效的主客体电荷转移以提升器件性能而言是非常理想的。在此,我们报告了两种新型二维PAVs的高效合成及其主客体相互作用,这两种二维PAVs包含缺电子的联吡嗪单元,并以一种无氮的二维PAV作为参考。它们具有晶体结构且化学性质稳定。多种光谱技术结合理论计算表明,丰富的氮位点提高了二维PAVs的电子亲和力。我们测试了它们容纳客体硫物种的效率,发现缺电子材料有助于在多孔通道中物理限制并稳定硫/多硫化物(LiS)分子,促进分子间电荷转移。结果,以二维PAVs封装的硫作为电极材料,我们在锂硫电池的200次充放电循环后实现了高比容量和出色的容量保持率。