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基于 Lennard-Jones 势的曲面表面能

Surface Energy of Curved Surface Based on Lennard-Jones Potential.

作者信息

Wang Dan, Hu Zhili, Peng Gang, Yin Yajun

机构信息

Key Laboratory of Mechanics and Control of Mechanical Structures, Interdisciplinary Research Institute, College of Aerospace Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing 211100, China.

Department of Engineering Mechanics, School of Aerospace, Tsinghua University, Beijing 100084, China.

出版信息

Nanomaterials (Basel). 2021 Mar 9;11(3):686. doi: 10.3390/nano11030686.

Abstract

Although various phenomena have confirmed that surface geometry has an impact on surface energy at micro/nano scales, determining the surface energy on micro/nano curved surfaces remains a challenge. In this paper, based on Lennard-Jones (L-J) pair potential, we study the geometrical effect on surface energy with the homogenization hypothesis. The surface energy is expressed as a function of local principle curvatures. The accuracy of curvature-based surface energy is confirmed by comparing surface energy on flat surface with experimental results. Furthermore, the surface energy for spherical geometry is investigated and verified by the numerical experiment with errors within 5%. The results show that (i) the surface energy will decrease on a convex surface and increase on a concave surface with the increasing of scales, and tend to the value on flat surface; (ii) the effect of curvatures will be obvious and exceed 5% when spherical radius becomes smaller than 5 nm; (iii) the surface energy varies with curvatures on sinusoidal surfaces, and the normalized surface energy relates with the ratio of wave height to wavelength. The curvature-based surface energy offers new insights into the geometrical and scales effect at micro/nano scales, which provides a theoretical direction for designing NEMS/MEMS.

摘要

尽管各种现象已证实表面几何形状在微/纳尺度上对表面能有影响,但确定微/纳弯曲表面上的表面能仍然是一项挑战。本文基于 Lennard-Jones(L-J)对势,利用均匀化假设研究了几何形状对表面能的影响。表面能被表示为局部主曲率的函数。通过将平面上的表面能与实验结果进行比较,证实了基于曲率的表面能的准确性。此外,通过数值实验研究并验证了球形几何形状的表面能,误差在 5%以内。结果表明:(i)随着尺度的增加,凸表面上的表面能将降低,凹表面上的表面能将增加,并趋于平面上的值;(ii)当球形半径小于 5 nm 时,曲率的影响将变得明显且超过 5%;(iii)正弦曲面上的表面能随曲率变化,归一化表面能与波高与波长的比值有关。基于曲率的表面能为微/纳尺度上的几何形状和尺度效应提供了新的见解,为纳米机电系统/微机电系统的设计提供了理论方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f40c/7998149/2c8ab616103a/nanomaterials-11-00686-g0A1.jpg

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