Liquid-State Dewetting of Pulsed-Laser-Heated Nanoscale Metal Films and Other Geometries

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作者
Kondic, Lou [1 ]
Gonzalez, Alejandro G. [2 ]
Diez, Javier A. [2 ]
Fowlkes, Jason D. [3 ,4 ]
Rack, Philip [3 ,4 ]
机构
[1] Department of Mathematical Sciences and Center for Applied Mathematics and Statistics, New Jersey Institute of Technology, Newark,NJ,07102, United States
[2] Instituto de Física Arroyo Seco (CIFICEN-CONICET-CICPBA), Universidad Nacional Del Centro de la Provincia de Buenos Aires, Tandil,7000, Argentina
[3] Nanofabrication Research Laboratory, Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Oak Ridge,TN,37831, United States
[4] Department of Materials Science and Engineering, University of Tennessee, Knoxville,TN,37996, United States
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Metals;
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摘要
Metal films of nanoscale thickness, deposited on substrates and exposed to laser heating, provide systems that involve several interesting multiphysics effects. In addition to fluid mechanical aspects associated with a free boundary setup, other relevant physical effects include phase change, thermal flow, and liquid-solid interactions. Such films are challenging to model, in particular because inertial effects may be relevant, and large contact angles require care when considering the long-wave formulation. Applications of nanoscale metal films are numerous, and the materials science community is actively pursuing more complex setups involving templated films and substrates, bimetallic films and alloys, and a variety of elemental film geometries. The goal of this review is to discuss our current understanding of thin metal film systems, while also providing an overview of the challenges in this research area, which stands at the intersection of fluid mechanics, materials science, and thermal physics. © 2020 by Annual Reviews. All rights reserved.
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页码:235 / 262
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