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钛掺杂量和退火温度对溶胶-凝胶法制备的WO₃电致变色性能的影响

Effects of Ti-doping amount and annealing temperature on electrochromic performance of sol-gel derived WO.

作者信息

Park Hee Sung, Park Sunghyeok, Song Seung Han, Dao Thuy Thi, Tran Hung Van, Lee Seok In, Han Chi-Hwan, Cho Churl Hee, Hong Sungjun

机构信息

Photovoltaic Laboratory, New and Renewable Energy Research, Korea Institute of Energy Research 152 Gajeong-ro, Yuseong-gu Daejeon 34125 Republic of Korea

Department of Energy Science and Technology, Chungnam National University 99 Daehak-ro, Yuseong-gu Daejeon 35015 Republic of Korea

出版信息

RSC Adv. 2022 Jun 13;12(27):17401-17409. doi: 10.1039/d2ra02247h. eCollection 2022 Jun 7.

Abstract

Fine control of structural and morphological features in electrochromic materials is of paramount importance for realizing practical electrochromic devices (ECDs), which can dynamically adjust indoor light and temperature of buildings. To this end, herein we investigate impacts of two variants such as Ti-doping amount and the annealing temperature on physical and chemical properties of sol-gel derived electrochromic WO films. We use a wide range of titanium coupling agents (TCAs) as Ti-dopants ranging from 0 wt% to 20 wt% and vary the annealing temperature between 200 °C and 400 °C with 50 °C interval. Both variants greatly influence the physical properties of the resulting WO films, resulting in different crystallinities and morphologies. Through complementary analytical techniques, we find that the WO film featuring an amorphous phase with nano-porous morphology enhances the electrochemical and electrochromic performances. The specific TCA used in this study helps stabilize the amorphous WO structure and generate the nano-pores during the following thermal treatment its thermal decomposition. As a result, the WO film having an optimal 8 wt% TCA annealed at 300 °C shows a high optical density of 73.78% in visible light (400-780 nm), rapid switching speed ( = 5.12 s and = 4.74 s), and high coloration efficiency of 52.58 cm C along with a superior cyclic stability. Thus, understanding a structure-property relationship is of paramount importance in engineering the advanced electrochromic WO for use in practical ECDs and other optoelectronic applications.

摘要

对电致变色材料的结构和形态特征进行精细控制对于实现实用的电致变色器件(ECD)至关重要,这种器件可以动态调节建筑物的室内光线和温度。为此,我们在此研究了诸如钛掺杂量和退火温度这两个变量对溶胶 - 凝胶衍生的电致变色WO薄膜物理和化学性质的影响。我们使用了范围广泛的钛偶联剂(TCA)作为钛掺杂剂,其含量从0 wt%到20 wt%不等,并将退火温度在200℃至400℃之间以50℃的间隔进行变化。这两个变量都极大地影响了所得WO薄膜的物理性质,导致了不同的结晶度和形态。通过互补的分析技术,我们发现具有纳米多孔形态的非晶相WO薄膜增强了电化学和电致变色性能。本研究中使用的特定TCA有助于稳定非晶态WO结构,并在随后的热处理及其热分解过程中产生纳米孔。结果,在300℃退火的具有8 wt%最佳TCA的WO薄膜在可见光(400 - 780 nm)中显示出73.78%的高光密度、快速的切换速度( = 5.12 s和 = 4.74 s)以及52.58 cm C的高显色效率,同时具有优异的循环稳定性。因此,理解结构 - 性能关系对于设计用于实际ECD和其他光电应用的先进电致变色WO至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bf1/9191318/f3e2520ddfab/d2ra02247h-f1.jpg

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