用二维范德华材料实现纳米光子结构的功能化

IF 6.6 2区 材料科学 Q1 CHEMISTRY, PHYSICAL
Yuan Meng, Hongkun Zhong, Zhihao Xu, Tiantian He, Justin S. Kim, Sangmoon Han, Sunok Kim, Seoungwoong Park, Yijie Shen, Mali Gong, Qirong Xiao and Sang-Hoon Bae
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引用次数: 1

摘要

二维(2D)范德华材料与纳米结构的集成引发了广泛的光学和光电子应用。传统材料的光子结构通常缺乏有效的可重构性或多功能性。因此,原子薄的2D材料可以为已建立的光子结构库(如集成波导、光纤、光子晶体和超表面)产生新的功能和可重构性。同时,通过利用具有高光学限制的微腔或谐振器,光和范德华材料之间的相互作用也可以大大增强。2D材料独特的范德华表面能够方便地转移和混合具有高自由度的各种预制光子模板,功能化为各种应用的光学增益、调制、传感或等离子体介质。在这里,我们回顾了将2D材料协同到纳米光子结构以实现新功能或性能增强的最新进展。还讨论了可扩展的2D材料制备和转移方面的挑战,以及在2D材料之外集成范德华构建块的新机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Functionalizing nanophotonic structures with 2D van der Waals materials

Functionalizing nanophotonic structures with 2D van der Waals materials

The integration of two-dimensional (2D) van der Waals materials with nanostructures has triggered a wide spectrum of optical and optoelectronic applications. Photonic structures of conventional materials typically lack efficient reconfigurability or multifunctionality. Atomically thin 2D materials can thus generate new functionality and reconfigurability for a well-established library of photonic structures such as integrated waveguides, optical fibers, photonic crystals, and metasurfaces, to name a few. Meanwhile, the interaction between light and van der Waals materials can be drastically enhanced as well by leveraging micro-cavities or resonators with high optical confinement. The unique van der Waals surfaces of the 2D materials enable handiness in transfer and mixing with various prefabricated photonic templates with high degrees of freedom, functionalizing as the optical gain, modulation, sensing, or plasmonic media for diverse applications. Here, we review recent advances in synergizing 2D materials to nanophotonic structures for prototyping novel functionality or performance enhancements. Challenges in scalable 2D materials preparations and transfer, as well as emerging opportunities in integrating van der Waals building blocks beyond 2D materials are also discussed.

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来源期刊
Nanoscale Horizons
Nanoscale Horizons Materials Science-General Materials Science
CiteScore
16.30
自引率
1.00%
发文量
141
期刊介绍: Nanoscale Horizons stands out as a premier journal for publishing exceptionally high-quality and innovative nanoscience and nanotechnology. The emphasis lies on original research that introduces a new concept or a novel perspective (a conceptual advance), prioritizing this over reporting technological improvements. Nevertheless, outstanding articles showcasing truly groundbreaking developments, including record-breaking performance, may also find a place in the journal. Published work must be of substantial general interest to our broad and diverse readership across the nanoscience and nanotechnology community.
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