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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >MoS2 nanosheets inlaid in 3D fibrous N-doped carbon spheres for lithium-ion batteries and electrocatalytic hydrogen evolution reaction
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MoS2 nanosheets inlaid in 3D fibrous N-doped carbon spheres for lithium-ion batteries and electrocatalytic hydrogen evolution reaction

机译:MOS2纳米蛋白酶在3D纤维N掺杂碳球中镶嵌用于锂离子电池和电催化氢进化反应

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摘要

Molybdenum disulfide (MoS2) has received considerable interests in rechargeable lithium-ion batteries (LIBs) and hydrogen evolution reaction (HER). To overcome the instinct limitations of pristine MoS2, such as low conductivity, poor cyclic stability and rate performance, hybrid carbon-MoS2 composites are often practically applied to improve the electrochemical properties. Herein, a facile, scalable, and durable synthesis method is innovated to inlay MoS2 nanosheets into three-dimensional (3D) fibrous nitrogen-doped carbon spheres (FNCs) for achieving 3D FNC-MoS2 composites. The free-standing 3D FNC-MoS2 nanocomposites can be used as the anode for LIBs. It exhibits a high reversible capacity of similar to 700 mA h g(-1), and nearly no fading of the capacity nearly after 400 cycles at a current density of 1.2 A g(-1). Meanwhile, FNC-MoS2 exhibits superior HER activity accompanied by a small overpotential of around 194 mV in 0.5 M H2SO4. Tafel slopes are estimated to be 54 mV dec(-1), and the current density of FNC-MoS2 decreases very slightly compared to the initial one after 1000 cycles. We are convinced that the enhanced Li+ storage performance and HER activity are attributed to the synergistic effects and structural advantages, such as higher specific surface, larger pore volume, radical fibrous structure, and chemical/mechanical stability, achieved from the unique architectures of the title material. (C) 2019 Elsevier Ltd. All rights reserved.
机译:二硫化钼(MOS2)在可再充电锂离子电池(LIBS)和氢进化反应(她)中获得了相当大的兴趣。为了克服原始MOS2的本能限制,例如低导电性,循环稳定性和速率性能不佳,杂合碳-MOS2复合材料通常实际上是为了改善电化学性质。这里,将容易缩放和耐用的合成方法创新,以将MOS2纳米片镶嵌成三维(3D)纤维氮气掺杂碳球(FNC),用于实现3D FNC-MOS2复合材料。独立式3D FNC-MOS2纳米复合材料可用作LIBS的阳极。它表现出高可逆能力,类似于700 mA H(-1),并且几乎在电流密度为1.2Ag(-1)的400次循环之后几乎没有衰落。同时,FNC-MOS2伴随着伴随着大约194mV的小型过电位,在0.5米H 2 SO 4中伴随着伴随的浓度。 Tafel斜率估计为54mV DEC(-1),并且与1000次循环之后的初始一个相比,FNC-MOS2的电流密度略微降低。我们相信,增强的Li +储存性能和她的活动归因于协同效应和结构优势,如较高的特定表面,较大的孔隙体积,根本纤维结构,以及来自标题的独特架构所达到的化学/机械稳定性材料。 (c)2019年elestvier有限公司保留所有权利。

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