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用于能源应用的多孔有机笼的最新进展。

Recent advances in porous organic cages for energy applications.

作者信息

Liu Chao, Wang Zhixuan, Wang Hailong, Jiang Jianzhuang

机构信息

State Key Laboratory of New Pharmaceutical Preparations and Excipients, College of Chemistry and Materials Science, Hebei University Baoding 071002 China.

Beijing Advanced Innovation Center for Materials Genome Engineering, Beijing Key Laboratory for Science and Application of Functional Molecular and Crystalline Materials, Department of Chemistry, School of Chemistry and Biological Engineering, University of Science and Technology Beijing Beijing 100083 China

出版信息

Chem Sci. 2024 Oct 23;15(46):19188-211. doi: 10.1039/d4sc05309e.

Abstract

In recent years, the energy and environmental crises have attracted more and more attention. It is very important to develop new materials and technologies for energy storage and conversion. In particular, it is crucial to develop carriers that store energy or promote mass and electron transport. Emerging porous organic cages (POCs) are very suitable for this purpose because they have inherent advantages including structural designability, porosity, multifunction and post-synthetic modification. POC-based materials, such as pristine POCs, POC composites and POC derivatives also exhibit excellent energy-related properties. This latest perspective provides an overview of the progress of POC-based materials in energy storage and conversion applications, including photocatalysis, electrocatalysis (CORR, NORR, ORR, HER and OER), separation (gas separation and liquid separation), batteries (lithium-sulfur, lithium-ion and perovskite solar batteries) and proton conductivity, highlighting the unique advantages of POC-based materials in various forms. Finally, we summarize the current advances, challenges and further perspectives of POC-based materials in energy applications. This perspective will promote the design and synthesis of next-generation POC-based materials for energy applications.

摘要

近年来,能源和环境危机已引起越来越多的关注。开发用于能量存储和转换的新材料和技术非常重要。特别是,开发能够存储能量或促进质量和电子传输的载体至关重要。新兴的多孔有机笼(POC)非常适合此目的,因为它们具有包括结构可设计性、孔隙率、多功能性和后合成修饰在内的固有优势。基于POC的材料,如原始POC、POC复合材料和POC衍生物,也表现出优异的能量相关性能。这篇最新的综述概述了基于POC的材料在能量存储和转换应用方面的进展,包括光催化、电催化(CORR、NORR、ORR、HER和OER)、分离(气体分离和液体分离)、电池(锂硫电池、锂离子电池和钙钛矿太阳能电池)以及质子传导性,突出了各种形式的基于POC的材料的独特优势。最后,我们总结了基于POC的材料在能源应用方面的当前进展、挑战和进一步的前景。这篇综述将推动用于能源应用的下一代基于POC的材料的设计和合成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b791/11600790/2701f23883d4/d4sc05309e-s1.jpg

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