Lábadi Zoltán, Ismaeel Noor Taha, Petrik Péter, Fried Miklós
Institute of Technical Physics & Materials Science, HUN-REN Centre for Energy Research, Konkoly-Thege Rd. 29-33, 1121 Budapest, Hungary.
Doctoral School on Materials Sciences and Technologies, Óbuda University, 1034 Budapest, Hungary.
Int J Mol Sci. 2025 Apr 10;26(8):3547. doi: 10.3390/ijms26083547.
Electrochromic materials have a wide range of energy-effective applications, such as in mirrors, smart windows, automobile sunroofs, and display devices. The electrochromic behavior of mixed metal oxides is focused on in this review. Extra heat absorbed by buildings is one of the major problems in our modern era, so electrochromic films have been used as components of smart windows to reduce heat absorption through glass windows. Transition metal (W, V, Ti, Mo, and Ni) oxides are considered popular electrochromic materials for this purpose. Smart windows consist of electrochromic material layers (such as metal oxide layers) and solid electrolytes sandwiched between transparent conductive layers. Few publications have studied the use of mixtures of different metal oxides as electrochromic materials. This study focuses on the results of investigations of such multicomponent materials, such as the effects on the electrochromic properties of mixed metal oxides and how they contrast with pure metal oxides. Reviewing these papers, we found WO- and MoO-based mixtures to be the most promising, especially the magnetron-sputtered, amorphous WO(40%)-MoO(60%) composition, which had 200-300 cm/C coloration efficiency. The mixed oxide materials reported in this review have room for development (and even commercialization) in the oxide-based electrochromic device market.
电致变色材料有广泛的节能应用,例如用于镜子、智能窗户、汽车天窗和显示设备。本综述聚焦于混合金属氧化物的电致变色行为。建筑物吸收的额外热量是现代社会的主要问题之一,因此电致变色薄膜已被用作智能窗户的组件,以减少通过玻璃窗的热量吸收。过渡金属(钨、钒、钛、钼和镍)氧化物被认为是用于此目的的常见电致变色材料。智能窗户由电致变色材料层(如金属氧化物层)和夹在透明导电层之间的固体电解质组成。很少有出版物研究使用不同金属氧化物的混合物作为电致变色材料。本研究聚焦于此类多组分材料的研究结果,例如混合金属氧化物对电致变色性能的影响以及它们与纯金属氧化物的对比情况。回顾这些论文,我们发现基于氧化钨和氧化钼的混合物最具前景,尤其是磁控溅射的非晶态氧化钨(40%)-氧化钼(60%)组合物,其着色效率为200-300 cm²/C。本综述中报道的混合氧化物材料在基于氧化物的电致变色器件市场中有发展(甚至商业化)的空间。