Photoacoustic 2D actuator via femtosecond pulsed laser action on van der Waals interfaces

Author:

Chen XinORCID,Kislyakov Ivan M.ORCID,Wang TiejunORCID,Xie Yafeng,Wang Yan,Zhang Long,Wang JunORCID

Abstract

AbstractAchieving optically controlled nanomachine engineering can satisfy the touch-free and non-invasive demands of optoelectronics, nanotechnology, and biology. Traditional optical manipulations are mainly based on optical and photophoresis forces, and they usually drive particles in gas or liquid environments. However, the development of an optical drive in a non-fluidic environment, such as on a strong van der Waals interface, remains difficult. Herein, we describe an efficient 2D nanosheet actuator directed by an orthogonal femtosecond laser, where 2D VSe2 and TiSe2 nanosheets deposited on sapphire substrates can overcome the interface van der Waals forces (tens and hundreds of megapascals of surface density) and move on the horizontal surfaces. We attribute the observed optical actuation to the momentum generated by the laser-induced asymmetric thermal stress and surface acoustic waves inside the nanosheets. 2D semimetals with high absorption coefficient can enrich the family of materials suitable to implement optically controlled nanomachines on flat surfaces.

Funder

High-End Foreign Expert Fellowship of the Ministry of Science and Technology of the People’s Republic of China

National Natural Science Foundation of China

the Strategic Priority Research Program of CAS

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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