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Hybrid Materials for Electrochemical Energy Storage
Chemistry of Materials ( IF 7.2 ) Pub Date : 2024-12-06 , DOI: 10.1021/acs.chemmater.4c02203 Christopher Choi, Yunkai Luo, Aaron Reed, Grace Whang, Bruce Dunn
Chemistry of Materials ( IF 7.2 ) Pub Date : 2024-12-06 , DOI: 10.1021/acs.chemmater.4c02203 Christopher Choi, Yunkai Luo, Aaron Reed, Grace Whang, Bruce Dunn
Hybrid materials hold significant promise for a variety of applications due to their customizable properties and functionalities that can be readily tailored by selecting specific elements and altering material compositions. In this review, we highlight the emerging potential of hybrid materials in energy storage applications, particularly as electrode and electrolyte materials. We describe model hybrid energy storage materials composed of organic and inorganic constituents. An overview of representative hybrid materials including metal–organic frameworks (MOFs), intercalated layered materials, and ionogels is provided with an emphasis on their material and functional properties enabled by hybridization.
中文翻译:
用于电化学储能的混合材料
混合材料具有可定制的特性和功能,可以通过选择特定元素和改变材料成分来轻松定制,因此在各种应用中具有重要的前景。在这篇综述中,我们强调了混合材料在储能应用中的新兴潜力,特别是作为电极和电解质材料。我们描述了由有机和无机成分组成的模型混合储能材料。概述了代表性的混合材料,包括金属-有机框架 (MOF)、插层分层材料和离子凝胶,并强调了它们通过杂化实现的材料和功能特性。
更新日期:2024-12-06
中文翻译:
用于电化学储能的混合材料
混合材料具有可定制的特性和功能,可以通过选择特定元素和改变材料成分来轻松定制,因此在各种应用中具有重要的前景。在这篇综述中,我们强调了混合材料在储能应用中的新兴潜力,特别是作为电极和电解质材料。我们描述了由有机和无机成分组成的模型混合储能材料。概述了代表性的混合材料,包括金属-有机框架 (MOF)、插层分层材料和离子凝胶,并强调了它们通过杂化实现的材料和功能特性。