论文标题

通过拉曼微光谱法研究2D材料的热膨胀系数:重新审视

Study of Thermal Expansion Coefficients of 2D Materials via Raman Micro-spectroscopy: Revisited

论文作者

Feng, Qianchi, Wei, Dongshan, Su, Yudan, Zhou, Zhiguang, Wang, Feng, Tian, Chuanshan

论文摘要

我们报告了一项使用拉曼微光谱和分子动力学模拟的联合研究,该研究对底物对2D材料的热性质的影响以及对2D膜的热膨胀系数(TEC)的重新审视测量。石墨烯被用作代表。我们发现石墨烯和底物之间的平面外耦合强烈影响温度依赖性振动模式和石墨烯的TEC。当在烷烃底物上支持石墨烯时,长波长平面外振荡的状态密度会显着降低。为了说明平面外耦合对TEC的贡献,开发了拉曼微光谱方案。在室温下,在八甲基三氯硅烷底物上的石墨烯TEC在室温下为(-0.6+-0.5)*10-6/k,这从根本上小于独立式石墨烯。我们的结果阐明了对2D材料与底物之间相互作用的理解,并提供了对受支持的2D膜TEC的光学测量的一般配方。

We report a joint study, using Raman micro-spectroscopy and molecular dynamics simulations, on the substrate effect on thermal properties of 2D materials and revisit measurement of thermal expansion coefficient (TEC) of supported 2D film. Graphene is employed as a representative. We find that the out-of-plane coupling between graphene and substrate strongly affects the temperature-dependent vibrational modes and TEC of graphene. Density of states for long-wavelength out-of-plane oscillations is significantly reduced when graphene is supported on an alkane substrate. To account for the contribution of the out-of-plane coupling to TEC, a Raman micro-spectroscopic scheme is developed. The TEC of graphene on octadecyltrichlorosilane substrate is found to be (-0.6+-0.5)*10-6/K at room temperature, which is fundamentally smaller than that of free-standing graphene. Our results shed light on the understanding of the interaction between 2D material and substrate, and offer a general recipe for optical measurement of TEC of a supported 2D film.

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