纳米光子学
范德瓦尔斯力
材料科学
折射率
光子学
摩尔吸收率
光电子学
宽带
纳米技术
光学
分子
化学
物理
有机化学
作者
Georgy A. Ermolaev,Ivan S. Vyslanko,Andrey P. Tselin,Marwa A. El-Sayed,Mikhail K. Tatmyshevskiy,Aleksandr S. Slavich,Dmitry I. Yakubovsky,Mikhail Mironov,Arslan Mazitov,Amir Eghbali,Daria A. Panova,Р. И. Романов,Andrey M. Markeev,Ivan A. Kruglov,Sergey M. Novikov,Andrey A. Vyshnevyy,Aleksey V. Arsenin,Valentyn S. Volkov
出处
期刊:Nanomaterials
[MDPI AG]
日期:2023-04-25
卷期号:13 (9): 1460-1460
被引量:12
摘要
Materials with high optical constants are of paramount importance for efficient light manipulation in nanophotonics applications. Recent advances in materials science have revealed that van der Waals (vdW) materials have large optical responses owing to strong in-plane covalent bonding and weak out-of-plane vdW interactions. However, the optical constants of vdW materials depend on numerous factors, e.g., synthesis and transfer method. Here, we demonstrate that in a broad spectral range (290–3300 nm) the refractive index n and the extinction coefficient k of Bi2Se3 are almost independent of synthesis technology, with only a ~10% difference in n and k between synthesis approaches, unlike other vdW materials, such as MoS2, which has a ~60% difference between synthesis approaches. As a practical demonstration, we showed, using the examples of biosensors and therapeutic nanoparticles, that this slight difference in optical constants results in reproducible efficiency in Bi2Se3-based photonic devices.
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