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用于锂离子电池的具有石墨烯包裹的NbO复合材料阳极的独立无粘结剂和无添加剂碳纳米纤维的合成。

Synthesis of freestanding binder- and additive-free carbon nanofiber with graphene-wrapped NbOcomposite anode for lithium-ion batteries.

作者信息

Kim Doo-Won, Kim So Yeun, Yang Kap Seung

机构信息

Institute of Advanced Composite Materials, Korea Institute of Science and Technology (KIST), Chudong-ro 92, Bongdong-eup, Wanju-gun, Jeollabukdo 55324, Republic of Korea.

Department of Polymer Engineering, Graduate School, School of Polymer Science and Engineering & Alan G. MacDiarmid Energy Research Institute, Chonnam National University, 77 Yongbong-ro, Buk-gu, Gwangju 61186, Republic of Korea.

出版信息

Nanotechnology. 2021 Oct 20;33(1). doi: 10.1088/1361-6528/ac162d.

Abstract

Niobium pentoxide (NbO)-based materials have attracted significant interest for application in diverse fields. Unfortunately, the employment of these materials as electrodes of lithium-ion batteries (LIBs) is limited by several inherent drawbacks. The present study demonstrated the synthesis of composites comprising homogeneous graphene-wrapped niobium pentoxide (GNbO) encapsulated in carbon nanofibers (CNFs) for utilization as binder- and additive-free anodes in LIBs. The composites were synthesized via electrospinning and subsequent carbonization; the presence of graphene (G) ensured the homogenous dispersion of the NbOparticles in the CNF matrix. The CNFs formed a highly conductive network that resulted in high physical flexibility, electrical conductivity, and structural stability during charge-discharge cycles, thereby facilitating rapid ion/electron transmission. Consequently, the CNF/GNbO composite anodes exhibited outstanding electrochemical performances. CNF/GNbO_5 (one of the synthesized composites with an NbOconcentration of 5 wt% relative to GO) delivered a specific capacity of 361 mAh gafter 100 cycles, corresponding to a capacity retention of 58.3%. In addition, it exhibited an excellent rate capability with a capacity of 317 mAh gat 10 C. The outcomes of the present study will facilitate the extensive application of the synthesized composites as high-performance anodes in next-generation LIBs.

摘要

基于五氧化二铌(NbO)的材料在多个领域的应用中引起了广泛关注。不幸的是,这些材料作为锂离子电池(LIBs)电极的应用受到几个固有缺点的限制。本研究展示了包含均匀的石墨烯包裹的五氧化二铌(GNbO)并封装在碳纳米纤维(CNFs)中的复合材料的合成,用于作为LIBs中无粘结剂和添加剂的阳极。该复合材料通过静电纺丝和随后的碳化合成;石墨烯(G)的存在确保了NbO颗粒在CNF基质中的均匀分散。CNFs形成了一个高导电网络,在充放电循环过程中导致了高物理柔韧性、导电性和结构稳定性,从而促进了快速的离子/电子传输。因此,CNF/GNbO复合阳极表现出优异的电化学性能。CNF/GNbO_5(合成的复合材料之一,其中NbO相对于氧化石墨烯的浓度为5 wt%)在100次循环后具有361 mAh g的比容量,对应于58.3%的容量保持率。此外,它在10 C时表现出优异的倍率性能,容量为317 mAh g。本研究的结果将促进合成的复合材料作为下一代LIBs中的高性能阳极的广泛应用。

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