过电位
纳米线
掺杂剂
光伏
化学
半导体
纳米技术
光催化
过渡金属
稳健性(进化)
兴奋剂
熔盐
可扩展性
催化作用
光电子学
光伏系统
材料科学
电化学
无机化学
电极
电气工程
计算机科学
物理化学
生物化学
工程类
数据库
基因
作者
Bin Liu,Hao Ming Chen,Chong Liu,Sean C. Andrews,Chris Hahn,Peidong Yang
摘要
Practical implementation of one-dimensional semiconductors into devices capable of exploiting their novel properties is often hindered by low product yields, poor material quality, high production cost, or overall lack of synthetic control. Here, we show that a molten-salt flux scheme can be used to synthesize large quantities of high-quality, single-crystalline TiO2 nanowires with controllable dimensions. Furthermore, in situ dopant incorporation of various transition metals allows for the tuning of optical, electrical, and catalytic properties. With this combination of control, robustness, and scalability, the molten-salt flux scheme can provide high-quality TiO2 nanowires to satisfy a broad range of application needs from photovoltaics to photocatalysis.
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