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用于无枝晶锂金属负极的碳纳米纤维网络中原位形成的亲锂LiNbO

In Situ Formed Lithiophilic LiNbO in a Carbon Nanofiber Network for Dendrite-Free Li-Metal Anodes.

作者信息

Yi Shan, Hong Donghui, Su Zhe, Tian Liying, Zhang Wanyu, Chen Mingqi, Hu Mengfei, Niu Bo, Zhang Yayun, Long Donghui

机构信息

Shanghai Key Laboratory of Multiphase Materials Chemical Engineering, East China University of Science and Technology, School of Chemical Engineering, Shanghai 200237, P. R. China.

Key Laboratory of Specially Functional Polymeric Materials and Related Technology, East China University of Science and Technology, Shanghai 200237, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2021 Dec 1;13(47):56498-56509. doi: 10.1021/acsami.1c17681. Epub 2021 Nov 16.

DOI:10.1021/acsami.1c17681
PMID:34784166
Abstract

Lithium metal is considered as a strongly attractive anode candidate for the high-energy-storage field, but its dreadful dendrite growth has haunted its commercialization progress. Herein, we develop a lithiophilic NbO-embedded three-dimensional (3D) carbon nanofiber network (NbO-CNF) as a scaffold to preload molten Li for the fabrication of dendrite-free composite anode. The in situ lithiation reaction between molten Li and NbO nanocrystals results in the formation of nanosize LiNbO nanoparticles, which can serve as preferred sites that regulate nucleation/growth behavior of Li during the plating process. Besides, due to its high structural stability and abundant internal inner space, the 3D CNF network can function as a reservoir to confine the dimensional expansion of "hostless Li". The resulting Li composite anodes exhibit enlarged active areas and reduced interfacial energy barriers, delivering a prolonged cycling of 1000 h with an ultralow hysteresis of 52 mV and dendrite-free morphology in a symmetric cell (1.0 mA cm). Coupled with the LiFePO cathode, the Li@NbO-CNF anode sustains a reversible capacity of 163 mAh g with an excellent capacity retention of 93.0% after 370 cycles at 0.5C. This all-around strategy of lithiophilic sites coupled with a 3D conductive nanofiber matrix may shed light on promising applications of high-capacity and dendrite-free Li-metal batteries.

摘要

锂金属被认为是高能存储领域极具吸引力的阳极候选材料,但其可怕的枝晶生长一直困扰着其商业化进程。在此,我们开发了一种亲锂的嵌入NbO的三维(3D)碳纳米纤维网络(NbO-CNF)作为支架,用于预加载熔融锂以制造无枝晶复合阳极。熔融锂与NbO纳米晶体之间的原位锂化反应导致形成纳米尺寸的LiNbO纳米颗粒,其可作为在电镀过程中调节锂的成核/生长行为的优选位点。此外,由于其高结构稳定性和丰富的内部空间,3D CNF网络可作为一个储库来限制“无主体锂”的尺寸膨胀。所得的锂复合阳极表现出扩大的活性面积和降低的界面能垒,在对称电池(1.0 mA cm)中实现了1000小时的长循环,具有52 mV的超低滞后和无枝晶形态。与LiFePO阴极耦合,Li@NbO-CNF阳极在0.5C下循环370次后保持163 mAh g的可逆容量,容量保持率高达93.0%。这种亲锂位点与3D导电纳米纤维基质相结合的全方位策略可能为高容量和无枝晶锂金属电池的应用带来希望。

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