过渡金属基结构相变材料光学性质的可调性

3区 物理与天体物理 Q1 Materials Science Progress in Optics Pub Date : 2023-05-24 DOI:10.3390/opt4020026
Sheheera Irfan, Yasir A. Haleem, M. Irshad, Muhammad Farooq Saleem, M. Arshad, Muhammad Habib
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引用次数: 0

摘要

相变是过渡金属基材料的一个有趣但鲜为人知的方面;这些相变会导致材料的折射率、吸收系数和其他光学性质的变化。过渡金属基材料存在于多种晶相中,也具有金属、半金属和半导体特性。在这篇综述中,我们证明了合金W和mo基二硫族化物能够在结构中实现相变,并且使用各种合金模型和现代基于dft的计算可以在很大范围内调节相变温度。我们还分析了通过掺杂过渡金属来调整金属氧化物纳米粒子的光学带隙的方法,使其适合于光开关和热成像。在介绍和简要说明了这些化合物的结构及其特殊性质之后,我们讨论了合成方法及其应用,作为提高过渡金属基二硫族化合物和氧化物性能的重要策略的一部分。最后,我们的结论强调了二维材料作为相变材料的前景,因为它们在可扩展性和适应性方面具有优势。
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Tunability of the Optical Properties of Transition-Metal-Based Structural Phase Change Materials
Phase transitions are an intriguing yet poorly understood aspect of transition-metal-based materials; these phase transitions can result in changes to the refractive index, absorption coefficient, and other optical properties of the materials. Transition-metal-based materials exist in a variety of crystalline phases and also have metallic, semi-metallic, and semi-conducting characteristics. In this review, we demonstrate that alloyed W- and Mo-based dichalcogenides enable phase transitions in structures, with phase transition temperatures that are tunable across a wide range using various alloy models and modern DFT-based calculations. We also analyze the tuning the optical bandgap of the metal oxide nanoparticles through doping of the transition metal in a manner that is suitable for optical switching and thermal imaging. After the introduction and a brief illustration of the structures and their exceptional properties, we discuss synthetic methodologies and their application as part of important strategies toward the enhanced performance of transition-metal-based dichalcogenides and oxides. In the end, our conclusion highlights the prospects of 2D materials as phase transition materials due to their advantages in terms of scalability and adaptability.
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来源期刊
Progress in Optics
Progress in Optics 物理-光学
CiteScore
4.50
自引率
0.00%
发文量
8
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