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声子诱导的水纳米液滴在支撑黑磷烯上的棘轮运动。

Phonon-Induced Ratchet Motion of a Water Nanodroplet on a Supported Black Phosphorene.

作者信息

Chen Jige

机构信息

Zhangjiang Laboratory, Shanghai Advanced Research Institute, Chinese Academy of Sciences, Shanghai 201210, China.

Shanghai Institute of Applied Physics, Chinese Academy of Sciences, Shanghai 201800, China.

出版信息

J Phys Chem Lett. 2020 Jun 4;11(11):4298-4304. doi: 10.1021/acs.jpclett.0c01179. Epub 2020 May 15.

Abstract

Phonons are not supposed to carry any physical momentum as lattice vibrational modes; thus, it is believed no mass transport could be induced by phonons. In this Letter, we show that a ratchet motion of a water nanodroplet could be induced on a two-dimensional puckered lattice like black phosphorene (BP) by exciting its flexural phonons through a moving substrate. The water nanodroplet exhibits a forward motion along the armchair or a backward motion along the zigzag directions on a BP lattice that is supported on a substrate possessing a relative armchair or zigzag forward motion with BP. Through the analysis of the structure and vibrational density states of BP, it is found that in-plane lattice displacement asymmetry and the in-plane vibration asymmetry are induced by the excited flexural phonons, which determine the water nanodroplet motion as an anisotropic Brownian motor. Simulations of the nanodroplet motion as functions of the substrate relative motion speed and direction and also the substrate coupling strength with BP are performed. Results of the nanodroplet ratchet motion exhibit good agreement with the theoretical predications from calculating the Brownian motor asymmetry. Our findings reveal a promising mass transport strategy and a further understanding of phonon-related interactions in crystalline solids.

摘要

声子作为晶格振动模式不应携带任何物理动量;因此,人们认为声子不会引起质量输运。在本信函中,我们表明,通过移动衬底激发二维褶皱晶格(如黑磷(BP))的弯曲声子,可以诱导水纳米液滴产生棘轮运动。在支撑于相对于BP具有扶手椅或锯齿形向前运动的衬底上的BP晶格上,水纳米液滴沿扶手椅方向呈现向前运动,或沿锯齿形方向呈现向后运动。通过对BP的结构和振动密度态的分析,发现激发的弯曲声子会引起面内晶格位移不对称和面内振动不对称,这决定了水纳米液滴作为各向异性布朗马达的运动。进行了纳米液滴运动作为衬底相对运动速度和方向以及衬底与BP耦合强度函数的模拟。纳米液滴棘轮运动的结果与计算布朗马达不对称性的理论预测结果吻合良好。我们的发现揭示了一种有前景的质量输运策略,并进一步加深了对晶体固体中声子相关相互作用的理解。

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