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Recent Progress of Nanoscale Metal‐Organic Frameworks in Synthesis and Battery Applications

机译:纳米级金属 - 有机框架在合成和电池应用中的最新进展

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摘要

As one type of promising inorganic–organic hybrid crystal material, metal‐organic frameworks (MOFs) have attracted widespread attention in many potential fields, particularly in energy storage and conversion. Recently, effective strategies have been developed to construct uniform nanoscale MOFs (NMOFs), which not only retain inherent advantages of MOFs but also develop some improved superiorities, including shorter diffusion pathway for guest transportation and more accessible active sites for surface adsorption and reaction. Additonally, their nanometer size provides more opportunity for post‐functionalization and hybridization. In this review, recent progress on the preparation of NMOFs is summarized, primarily through bottom‐up strategies including reaction parameter‐ and coordination‐assisted synthesis, and top‐down strategies such as liquid exfoliation and salt‐template confinement. Additionally, recent applications of NMOFs in batteries as electrodes, separators, and electrolytes is discussed. Finally, some important issues concerning the fabrication and application are emphasized, which should be paid attention in future.
机译:作为一种有前途的无机 - 有机杂交晶体材料,金属有机框架(MOF)在许多潜在的领域中引起了广泛的关注,特别是在能量储存和转换中。最近,已经开发了有效的策略来构建均匀的纳米级MOF(NMOFS),这不仅保留了MOF的固有优势,而且还产生了一些改进的优越性,包括用于客户交通的较短扩散途径,以及表面吸附和反应的更易于易于接近的活性位点。 adtitonally,它们的纳米大小为后功能化和杂交提供了更多的机会。在本综述中,总结了NMOF的制备的最新进展,主要是通过自下而上的策略,包括反应参数和协调辅助合成,以及液体去角质和盐模板限制等自上而下的策略。此外,讨论了据讨论了NMOFS在电池中作为电极,分离器和电解质的应用。最后,强调了一些关于制造和申请的重要问题,将来应得到注意。

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