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Cobalt ions doped tungsten oxide nanowires achieved vertically aligned nanostructure with enhanced electrochromic properties

机译:钴离子掺杂的氧化钨纳米线实现了垂直排列的纳米结构,具有增强的电致变色性能

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摘要

In this research, Co ions doped WO3 films are introduced with modified morphology and enhanced electrochromic (EC) properties by seed free hydrothermal method. Effects of Co dopant on the structure and electrochromic performance of the WO3 films are systematically investigated. It is found that compared with the pure WO3 film, Co ions doped WO3 films present significant variation in surface morphology, and also exhibit much higher transmittance modulation (75.4% at 680 nm and 76.7% at 890 nm), higher CE value (65.7 cm(2) C-1) and better long-term stability (over 4000 cycles). The explanation of the enhanced EC performance is mainly attributed to the vertically aligned nanostructure of the films, which provided larger specific surface area, larger number of accessible intercalation sites and rapid ions diffusion. Thus, these Codoped WO3 nanowire arrays films may offer a promising way for developing materials with high EC performance.
机译:在这项研究中,通过无籽水热法引入了掺有Co离子的WO3薄膜,该薄膜具有改进的形态和增强的电致变色(EC)性能。系统地研究了Co掺杂剂对WO3薄膜结构和电致变色性能的影响。发现与纯WO3膜相比,掺Co离子的WO3膜在表面形态上存在显着变化,并且还显示出更高的透射率调制(在680 nm下为75.4%,在890 nm下为76.7%),更高的CE值(65.7 cm) (2)C-1)和更好的长期稳定性(超过4000个循环)。增强的EC性能的解释主要归因于薄膜的垂直排列纳米结构,该结构提供了更大的比表面积,更大数量的可到达嵌入位点和快速的离子扩散。因此,这些共掺杂的WO3纳米线阵列膜可能为开发具有高EC性能的材料提供有前途的方法。

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