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通过湿纺组装纤维策略提高 MOF 衍生物的储锂性能。

Boosting Lithium Storage Properties of MOF Derivatives through a Wet-Spinning Assembled Fiber Strategy.

机构信息

College of Materials Science and Engineering, Zhejiang University of Technology, 18 Chaowang Road, Hangzhou, 310014, China.

Center for Membrane Separation and Water Science and Technology, Ocean College, Zhejiang University of Technology, 18 Chaowang Road, Hangzhou, 310014, China.

出版信息

Chemistry. 2018 Sep 18;24(52):13792-13799. doi: 10.1002/chem.201802826. Epub 2018 Aug 31.

Abstract

Graphene composite fibers are of great importance in constructing electrode materials with high flexibility and conductivity for energy storage and electronic devices. Integration of multifunctional metal-organic frameworks (MOFs) into graphene fiber scaffolds enables novel functions and enhanced physical/chemical properties. The close-packed and aligned graphene sheets along with the porous MOF-derived structures can achieve excellent lithium storage performance through synergetic effects. In this work, a facile and general strategy is demonstrated for the preparation of MOF/graphene oxide (GO) fibers, which serve as precursors for the subsequent preparation of porous metal oxide/reduced graphene oxide (rGO) composite fibers. The obtained composites, for example, porous Fe O /rGO and Co O /rGO fibers, possess unique features of MOF-derived porous structures and excellent electrical conductivity. When tested as anode materials for lithium-ion batteries in coin cells, the MOF/GO fiber-derived porous metal oxide/rGO composite fibers exhibited high specific capacity, excellent rate capability and cycling performance. Moreover, a flexible fiber battery was fabricated based on the Fe O /rGO composite fiber, which demonstrates its potential application for flexible electronic devices.

摘要

石墨烯复合纤维在构建具有高柔韧性和导电性的储能和电子器件电极材料方面具有重要意义。将多功能金属-有机骨架(MOF)集成到石墨烯纤维支架中,可以实现新颖的功能和增强的物理/化学性质。紧密堆积和排列的石墨烯片以及多孔的 MOF 衍生结构可以通过协同效应实现优异的锂存储性能。在这项工作中,展示了一种简便通用的方法来制备 MOF/氧化石墨烯(GO)纤维,它们可用作后续制备多孔金属氧化物/还原氧化石墨烯(rGO)复合材料纤维的前体。所得到的复合材料,例如多孔 Fe O /rGO 和 Co O /rGO 纤维,具有 MOF 衍生的多孔结构和优异导电性的独特特征。当在硬币电池中作为锂离子电池的阳极材料进行测试时,MOF/GO 纤维衍生的多孔金属氧化物/rGO 复合材料纤维表现出高比容量、优异的倍率性能和循环性能。此外,基于 Fe O /rGO 复合纤维制造了一种柔性纤维电池,展示了其在柔性电子设备中的潜在应用。

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