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通过表面等离子体共振检测凝聚现象。

Condensation phenomenon detection through surface plasmon resonance.

作者信息

Ibrahim Joyce, Al Masri Mostafa, Veillas Colette, Celle Frédéric, Cioulachtjian Serge, Verrier Isabelle, Lefèvre Frédéric, Parriaux Olivier, Jourlin Yves

出版信息

Opt Express. 2017 Oct 2;25(20):24189-24198. doi: 10.1364/OE.25.024189.

Abstract

The aim of this work is to optically detect the condensation of acetone vapor on an aluminum plate cooled down in a two-phase environment (liquid/vapor). Sub-micron period aluminum based diffraction gratings with appropriate properties, exhibiting a highly sensitive plasmonic response, were successfully used for condensation experiments. A shift in the plasmonic wavelength resonance has been measured when acetone condensation on the aluminum surface takes place due to a change of the surrounding medium close to the surface, demonstrating that the surface modification occurs at the very beginning of the condensation phenomenon. This paper presents important steps in comprehending the incipience of condensate droplet and frost nucleation (since both mechanisms are similar) and thus to control the phenomenon by using an optimized engineered surface.

摘要

这项工作的目的是通过光学手段检测丙酮蒸汽在处于两相环境(液体/蒸汽)中冷却的铝板上的凝结情况。具有适当特性、呈现出高灵敏度等离子体响应的亚微米周期铝基衍射光栅被成功用于凝结实验。当丙酮在铝表面发生凝结时,由于靠近表面的周围介质发生变化,测量到了等离子体波长共振的偏移,这表明在凝结现象刚开始时就发生了表面改性。本文介绍了理解冷凝液滴和霜核形成起始阶段(因为这两种机制相似)的重要步骤,从而通过使用优化的工程表面来控制该现象。

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