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共价有机框架及其复合材料作为增强型储能材料。

Covalent organic frameworks and their composites as enhanced energy storage materials.

作者信息

Divya Divya, Mishra Harshit, Jangir Ritambhara

机构信息

Sardar Vallabhbhai National Institute of Technology, Ichchanath, Surat-395 007, Gujarat, India.

出版信息

Chem Commun (Camb). 2025 Feb 4;61(12):2403-2423. doi: 10.1039/d4cc04688a.

Abstract

The advancement in materials chemistry promoted the growth of energy storage systems such as capacitors, supercapacitors and batteries. Covalent organic frameworks and nanomaterials have significantly improved the performance of various energy storage systems. Because of the unique properties of these materials, like high surface area, tunable architectures, and enhanced conductivity, researchers have developed effective and durable energy storage solutions for multiple applications. These findings are significant for meeting the demand for reliable and sustainable energy storage materials in order to save energy for a better future of mankind. As the demand for reliable and sustainable energy storage materials is increasing, the scientific community is more focussed towards the development of covalent organic frameworks (COFs). The high surface area, thermal and chemical stability, structural tunability, porosity, and low density of COFs make them appropriate for energy storage applications. Their potential to produce advanced energy storage devices with better performance and durability is further reinforced by their ability to be customized for specific applications and amplified for conductive materials. This review covers the designs and synthetic techniques of COFs and their composites specifically suitable for energy storage uses. It further highlights their use as cathode and anode materials in supercapacitors, COF based electrolytes and batteries. The review further includes the flexibility and efficiency of COFs in energy storage applications. Furthermore, it addresses the challenges and their potential solutions regarding the use of COFs in energy storage devices. By providing a comprehensive understanding of the advantages and limitations of COFs, this review aims to inform and inspire future advancements in energy storage technologies.

摘要

材料化学的进步推动了电容器、超级电容器和电池等储能系统的发展。共价有机框架和纳米材料显著提高了各种储能系统的性能。由于这些材料具有独特的性质,如高表面积、可调节的结构和增强的导电性,研究人员已经开发出了适用于多种应用的高效耐用的储能解决方案。这些发现对于满足对可靠和可持续储能材料的需求具有重要意义,以便为人类更美好的未来节约能源。随着对可靠和可持续储能材料需求的增加,科学界更加关注共价有机框架(COFs)的开发。COFs的高表面积、热稳定性和化学稳定性、结构可调节性、孔隙率以及低密度使其适用于储能应用。它们能够针对特定应用进行定制并与导电材料复合,这进一步增强了其制造具有更好性能和耐用性的先进储能装置的潜力。本综述涵盖了特别适用于储能用途的COFs及其复合材料的设计和合成技术。它进一步强调了它们在超级电容器中作为阴极和阳极材料的应用、基于COF的电解质以及电池。该综述还包括了COFs在储能应用中的灵活性和效率。此外,它还讨论了在储能装置中使用COFs所面临的挑战及其潜在解决方案。通过全面了解COFs的优点和局限性,本综述旨在为储能技术的未来发展提供信息并激发创新。

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