Modeling Stresses in Plasmonic Nanosensors

A. Lay-Ekuakille, M. A. Ugwiri, C. Liguori
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Abstract

Sensors are useful in many fields and in particular in environmental monitoring. Sea pollution detection is one of the special areas of environment matrices to be put under control. Given the fact, sensors, located in sea surface and/or deepness, are subject to temperature and mechanical stresses. This latter is a constrained burden in designing sensing systems for this scope. The paper illustrates the design of sensing system including a case hosting a nanosensor in order to allow sea water to pass through. A mechanical stress analysis has been performed.
等离子体纳米传感器中的应力建模
传感器在许多领域都很有用,特别是在环境监测方面。海洋污染检测是环境矩阵控制的一个特殊领域。鉴于这一事实,位于海面和/或深度的传感器会受到温度和机械应力的影响。后者在设计这种范围的传感系统时是一个有限的负担。本文阐述了传感系统的设计,包括一个容纳纳米传感器的外壳,以便让海水通过。进行了机械应力分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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