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扭曲少层石墨烯中手性转移的观察

Observation of Chirality Transfer in Twisted Few-Layer Graphene.

作者信息

Song Ge, Hao He, Yan Shuowen, Fang Susu, Xu Weigao, Tong Lianming, Zhang Jin

机构信息

Center for Nanochemistry, Beijing Science and Engineering Center for Nanocarbons, Beijing National Laboratory for Molecular Sciences, College of Chemistry and Molecular Engineering, Peking University, Beijing 100871, China.

Key Laboratory of Mesoscopic Chemistry, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, China.

出版信息

ACS Nano. 2024 Jul 9;18(27):17578-17585. doi: 10.1021/acsnano.4c01934. Epub 2024 Jun 25.

Abstract

Chiral materials are the focus of research in a variety of fields such as chiroptical sensing, biosensing, catalysis, and spintronics. Twisted two-dimensional (2D) materials are rapidly developing into a class of atomically thin chiral materials that can be effectively modulated through interlayer twist. However, chirality transfer in chiral 2D materials has not been reported. Here, we show that the chirality from the twist interface of graphene can directly transfer to achiral few-layer graphene and lead to a strong chiroptical response probed with circularly polarized Raman spectroscopy. Distinct Raman optical activity (ROA) for the interlayer shear modes in achiral few-layer graphene is observed, with the degree of polarization reaching as high as 0.5. These findings demonstrate the programmability of chiroptical response through stacking and twist engineering in 2D materials and offer insights into the transfer of chirality in atomically thin chiral materials for optical and electronic applications.

摘要

手性材料是手性光学传感、生物传感、催化和自旋电子学等多个领域的研究重点。扭曲二维(2D)材料正迅速发展成为一类原子级薄的手性材料,可通过层间扭曲进行有效调制。然而,尚未有关于手性二维材料中手性转移的报道。在此,我们表明,来自石墨烯扭曲界面的手性可直接转移至非手性的少层石墨烯,并导致圆偏振拉曼光谱探测到强烈的手性光学响应。在非手性少层石墨烯中观察到层间剪切模式的明显拉曼光学活性(ROA),偏振度高达0.5。这些发现证明了通过二维材料中的堆叠和扭曲工程实现手性光学响应的可编程性,并为原子级薄手性材料在光学和电子应用中的手性转移提供了见解。

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