在柔性ito涂层PET衬底上生长的氧化铌钼薄膜

IF 5.5 3区 材料科学 Q2 CHEMISTRY, PHYSICAL
Alice Marciel*, A. C. Bastos, Luiz Pereira, Suresh Kumar Jakka, Joel Borges, Filipe Vaz, Marco Peres, Katharina Lorenz, L. C. Alves, Arijeta Bafti, Luka Pavić, Rui F. Silva and Manuel Graça, 
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引用次数: 0

摘要

混合过渡金属氧化物以其优异的电化学性能被广泛应用于锂电池、超级电容器和其他储能装置中。在从单一功能到多功能应用的电致变色物中,这些氧化物特别有价值。在电致变色器件中集成电荷存储是能源技术的一个有前途的进展。在本研究中,采用直流磁控溅射技术在刚性和柔性衬底上沉积了透明的铌钼氧化物。样品的Mo/Nb原子比高达0.62,O2/Ar流动比固定为0.52,沉积时间为15 min。薄膜厚度从195 nm (0 Mo)到620 nm (0.62 Mo)不等,呈现无特征的非晶形态。表面粗糙度(Sq)在纳米尺度上,最大可达18 nm。无钼薄膜的可见光透射率高达82%。当钼含量为0.62时,样品在300 K和1 kHz时介电常数ε′= 294达到峰值。柔性基板上的薄膜在弯曲试验中显示出提高的机械耐久性。在Li+插层条件下,电致变色行为被评估,显示出很强的可逆性和再现性,最大显色效率为30.49 cm2/C,最大可逆性为83%,相对光调制高达79%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Niobium–Molybdenum Oxide Thin Films Grown on Flexible ITO-Coated PET Substrates

Niobium–Molybdenum Oxide Thin Films Grown on Flexible ITO-Coated PET Substrates

Mixed transition metal oxides, known for their superior electrochemical performance, are widely used in lithium batteries, supercapacitors, and other energy storage devices. In electrochromics, which have evolved from single to multifunctional applications, these oxides are particularly valuable. Integrating charge storage in electrochromic devices represents a promising advance in energy technology. In this study, transparent niobium–molybdenum oxides were deposited on rigid and flexible substrates by using DC magnetron sputtering. Samples were prepared with Mo/Nb atomic ratios up to 0.62, with a fixed O2/Ar flow ratio of 0.52 and a 15 min deposition time. Film thickness ranged from 195 nm (0 Mo) to 620 nm (0.62 Mo), displaying a featureless and amorphous morphology. Surface roughness (Sq) was on the nanometric scale, reaching a maximum of 18 nm. Optical transmission in the visible range was up to 82% for Mo-free films. Dielectric response increased with molybdenum content, peaking at ε’ = 294 (dielectric constant) at 300 K and 1 kHz for the 0.62 Mo sample. Films on flexible substrates showed improved mechanical durability in the bending tests. The electrochromic behavior was evaluated under Li+ intercalation, demonstrating strong reversibility and reproducibility, achieving a maximum coloration efficiency of 30.49 cm2/C, a maximum reversibility of 83%, and a relative optical modulation of up to 79%.

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来源期刊
ACS Applied Energy Materials
ACS Applied Energy Materials Materials Science-Materials Chemistry
CiteScore
10.30
自引率
6.20%
发文量
1368
期刊介绍: ACS Applied Energy Materials is an interdisciplinary journal publishing original research covering all aspects of materials, engineering, chemistry, physics and biology relevant to energy conversion and storage. The journal is devoted to reports of new and original experimental and theoretical research of an applied nature that integrate knowledge in the areas of materials, engineering, physics, bioscience, and chemistry into important energy applications.
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