Choi Seung Ho, Kang Yun Chan
Department of Materials Science and Engineering, Korea University, Anam-Dong, Seongbuk-Gu, Seoul 136-713, Republic of Korea.
Nanoscale. 2016 Feb 21;8(7):4209-16. doi: 10.1039/c5nr07733h.
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.
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。