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具有优异结构稳定性的富勒烯状二硒化钼纳米颗粒嵌入碳纳米管球用于高度可逆的钠离子存储。

Fullerene-like MoSe2 nanoparticles-embedded CNT balls with excellent structural stability for highly reversible sodium-ion storage.

作者信息

Choi Seung Ho, Kang Yun Chan

机构信息

Department of Materials Science and Engineering, Korea University, Anam-Dong, Seongbuk-Gu, Seoul 136-713, Republic of Korea.

出版信息

Nanoscale. 2016 Feb 21;8(7):4209-16. doi: 10.1039/c5nr07733h.

Abstract

Three-dimensional (3D) porous-structured carbon nanotube (CNT) balls embedded with fullerene-like MoSe2 nanocrystals were successfully prepared by the spray pyrolysis process and subsequent selenization process. The MoO2-CNT composite balls prepared by spray pyrolysis transformed into the fullerene-like MoSe2/CNT (F-MoSe2/CNT) composite balls by the selenization process. The F-MoSe2/CNT composite balls exhibited superior sodium-ion storage properties to bare MoSe2 and MoSe2/CNT with a filled structure (N-MoSe2/CNT), both of which were prepared as comparison samples. The 250(th) discharge capacities of bare MoSe2, N-MoSe2/CNT composite balls, and F-MoSe2/CNT composite balls were 144, 200, and 296 mA h g(-1), respectively, at a high current density of 1.0 A g(-1), and their capacity retentions measured from the second cycle were 37%, 66%, and 83%, respectively. The 10(th) discharge capacities of the F-MoSe2/CNT composite balls were 382, 346, 310, 280, and 255 mA h g(-1) at current densities of 0.2, 0.5, 1.5, 3.0, and 5.0 A g(-1), respectively. The synergetic effect of the fullerene-like MoSe2 nanocrystals with ultrafine sizes and the CNT balls with a tangled and 3D porous structure and high electrical conductivity resulted in excellent sodium-ion storage properties of the F-MoSe2/CNT composite balls.

摘要

通过喷雾热解工艺和随后的硒化工艺,成功制备了嵌入类富勒烯MoSe₂纳米晶体的三维(3D)多孔结构碳纳米管(CNT)球。通过喷雾热解制备的MoO₂-CNT复合球经硒化工艺转变为类富勒烯MoSe₂/CNT(F-MoSe₂/CNT)复合球。F-MoSe₂/CNT复合球表现出比裸露的MoSe₂和具有填充结构的MoSe₂/CNT(N-MoSe₂/CNT)更优异的钠离子存储性能,后两者均作为对比样品制备。在1.0 A g⁻¹的高电流密度下,裸露的MoSe₂、N-MoSe₂/CNT复合球和F-MoSe₂/CNT复合球的第250次放电容量分别为144、200和296 mA h g⁻¹,从第二个循环开始测量的容量保持率分别为37%、66%和83%。在电流密度分别为0.2、0.5、1.5、3.0和5.0 A g⁻¹时,F-MoSe₂/CNT复合球的第10次放电容量分别为382、346、310、280和255 mA h g⁻¹。尺寸超小的类富勒烯MoSe₂纳米晶体与具有缠结和三维多孔结构且高电导率的CNT球之间的协同效应导致F-MoSe₂/CNT复合球具有优异的钠离子存储性能。

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