光电子技术, 2018, 38 (1): 49, 网络出版: 2018-04-26  

全固态WO3薄膜电致变色器件研究进展

Research of Solid-state Electrochromic Devices Based on WO3 Films
作者单位
1 华南理工大学 材料科学与工程学院 发光材料与器件国家重点实验室 高分子光电材料与器件研究所, 广州 510640
2 华南农业大学 电子工程学院, 广州 510642
引用该论文

张巡天, 张啸尘, 姚日晖, 宁洪龙, 徐海涛. 全固态WO3薄膜电致变色器件研究进展[J]. 光电子技术, 2018, 38(1): 49.

ZHANG Xuntian, ZHANG Xiaochen, YAO Rihui, NING Honglong, XU Haitao. Research of Solid-state Electrochromic Devices Based on WO3 Films[J]. Optoelectronic Technology, 2018, 38(1): 49.

参考文献

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[5] Nilam Y Bhosalea, Sawanta S Malib, Chang K, et al. Hydrothermal synthesis of WO3 nanoflowers on etched ITO and their electrochromic properties[J]. Elsevierjournal. 2017, 246:1112-1120.

[6] Zhang H, Liu T, Huang L, et al. Hydrothermal synthesis of assembled sphere-like WO3 architectures and their gas-sensing properties[J]. Physica E 44. 2012. 1467.

[7] Zhou Ding, Xie Dong, Xia Xinhui, et al. All-solid-state electrochromic devices based on WO3NiO films: material developments and future applications[J].Science China(Chemistry),2016,1674-7291.

[8] Zhou Ding, Xie Dong, Xia Xinhui, et al. All-solid-state electrochromic devices based on WO3∥NiO films: material developments and future applications[J]. Science China(Chemistry) 2016,(11):1674-7291.

[9] Karuppasamy A. Electrochromism and photocatalysis in dendrite structured Ti:WO3 thin films grown by sputtering[J]. 2015,359:841-846.

[10] Liu Weishi, Zhang Xiaoyuan, Liu Jianqiang, et al. Electrochromic properties of organic-inorganic composite materials[J]. Elsevierjournal. 2017,718:379-385.

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张巡天, 张啸尘, 姚日晖, 宁洪龙, 徐海涛. 全固态WO3薄膜电致变色器件研究进展[J]. 光电子技术, 2018, 38(1): 49. ZHANG Xuntian, ZHANG Xiaochen, YAO Rihui, NING Honglong, XU Haitao. Research of Solid-state Electrochromic Devices Based on WO3 Films[J]. Optoelectronic Technology, 2018, 38(1): 49.

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