纳米棒
材料科学
超级电容器
纳米结构
非阻塞I/O
电极
纳米技术
原子层沉积
电化学
纳米线
纳米管
电容
图层(电子)
壳体(结构)
纳米壳
化学工程
复合材料
碳纳米管
纳米颗粒
化学
催化作用
物理化学
工程类
生物化学
作者
Cao Guan,Xinhui Xia,Nan Meng,Zhiyuan Zeng,Xiehong Cao,Cesare Soci,Hua Zhang,Hong Jin Fan
摘要
Hollow core–shell nanorods with a nanogap are designed and constructed with the assistance of atomic layer deposition (ALD) for energy storage applications. As a demonstration, CoO nanorods and NiO nanowalls are enclosed by a TiO2 nanotube shell, forming the “wire in tube” and “wall in box” structures, respectively. A thin sacrificial layer of Al2O3 is deposited by ALD and removed eventually, forming a nanogap between the CoO core (or the NiO nanowall) and the TiO2 shell. When they are tested as supercapacitor electrodes, an evident difference between the solid core–shell nanostructure and hollow ones can be found; for example, the hollow structure shows ∼2 to 4 times the capacitance compared to the solid wires. The electrochemical properties are also superior compared to the bare nanorods without the nanotube shell. The enhancement is ascribed to the conformal hollow design which provides enlarged specific surface areas and a shorter ion transport path. It is prospected that such a positive nanogap effect may also exist in other electrochemical cell electrodes such as lithium ion batteries and fuel cells.
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