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Tubular Organization of SnO2 Nanocrystallites for Improved Lithium Ion Battery Anode Performace

机译:管状组织snO2纳米晶改善锂离子电池阳极性能

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摘要

Porous tin oxide nanotubes were obtained by vacuum infiltration of tin oxide nanoparticles into porous aluminum oxide membranes, followed by calcination. The porous tin oxide nanotube arrays so prepared were characterized by FE-SEM, TEM, HRTEM, and XRD. The nanotubes are open-ended, highly ordered with uniform cross-sections, diameters and wall thickness. The tin oxide nanotubes were evaluated as a substitute anode material for the lithium ion batteries. The tin oxide nanotube anode could be charged and discharged repeatedly, retaining a specific capacity of 525 mAh/g after 80 cycles. This capacity is significantly higher than the theoretical capacity of commercial graphite anode (372 mAh/g) and the cyclability is outstanding for a tin based electrode. The cyclability and capacities of the tin oxide nanotubes were also higher than their building blocks of solid tin oxide nanoparticles. A few factors accounting for the good cycling performance and high capacity of tin oxide nanotubes are suggested.
机译:通过将氧化锡纳米颗粒真空渗入多孔氧化铝膜中,然后煅烧,获得多孔氧化锡纳米管。通过FE-SEM,TEM,HRTEM和XRD表征如此制备的多孔氧化锡纳米管阵列。纳米管是开放式的,高度有序,具有均匀的横截面,直径和壁厚。评价氧化锡纳米管作为锂离子电池的替代阳极材料。氧化锡纳米管阳极可以重复充电和放电,在80个循环后仍保持525 mAh / g的比容量。该容量显着高于商用石墨阳极的理论容量(372 mAh / g),并且对于锡基电极具有出色的循环性能。氧化锡纳米管的可循环性和容量也高于其固态氧化锡纳米颗粒的结构单元。建议了几个因素来解释氧化锡纳米管的良好循环性能和高容量。

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