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液体中微尺度疏水颗粒光泳的理论分析

Theoretical analysis for photophoresis of a microscale hydrophobic particle in liquids.

作者信息

Soong C Y, Li W K, Liu C H, Tzeng P Y

机构信息

Department of Applied Physics, Hokkaido University, Sapporo 060-8628, Japan.

出版信息

Opt Express. 2010 Feb 1;18(3):2168-82. doi: 10.1364/OE.18.002168.

Abstract

In the present study, combining the conventional photothermal analysis and the concept of interaction of solvent molecules in interfacial layer used for thermophoresis in liquid, a theory for photophoresis of a hydrophobic particle suspended in liquids is developed. To characterize hydrophobicity of the micro-particle, slip length in Navier's formula is used as an index. Analytical expressions are derived and a parametric analysis for photophoretic velocity is performed with emphasis on the influences of particle characteristics such as size, optical properties, hydrophobicity, and thermal conductivity. Heat source function and the corresponding asymmetry factor at various conditions are evaluated to interpret the mechanisms of negative and positive photophoresis and the conditions for transition between them. The present theory discloses that the particle surface hydrophobicity or fluid slippage at particle-liquid interface may lead to a remarkable enhancement in the particle photophoretic velocity in liquids. Higher particle thermal conductivity and larger size of liquid molecules both result in weaker photophoretic motion.

摘要

在本研究中,结合传统的光热分析以及用于液体中热泳的界面层中溶剂分子相互作用的概念,建立了一种关于悬浮在液体中的疏水颗粒光泳的理论。为了表征微粒的疏水性,将纳维公式中的滑移长度用作指标。推导了分析表达式,并对光泳速度进行了参数分析,重点关注颗粒特性(如尺寸、光学性质、疏水性和热导率)的影响。评估了各种条件下的热源函数和相应的不对称因子,以解释正负光泳的机制以及它们之间转变的条件。本理论表明,颗粒表面疏水性或颗粒 - 液体界面处的流体滑移可能导致液体中颗粒光泳速度显著提高。较高的颗粒热导率和较大尺寸的液体分子都会导致较弱的光泳运动。

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