Polymer/Ag Nanoparticles Composite for Chloroform Detection

O. Yeshchenko, S. O. Polomarev, S. Malynych, Yuriy Galabura, I. Luzinov, G. Chumanov
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Abstract

In this paper we report on changes in the extinction spectra of a nanocomposite consisting of Ag nanoparticles arranged in 2D array and embedded into poly(glycidyl methacrylate) host matrix. Two collective surface plasmon modes denoted as P and T were identified in the spectrum. They associated with electric dipoles perpendicular and parallel to the plane of the array respectively. It was found experimentally that intensity and bandwidth of corresponding bands decrease when the nanocomposite is exposed to chloroform vapor. At the same time, both plasmon bands shift toward shorter wavelength. Those dependences can be explained by weakening of the electrodynamic coupling between LSPR in neighboring nanoparticles due to the increase of the distance between particles caused by swelling of the polymer matrix. The spectral changes are fully reversible. It was found that sensitivity of the nanocomposite sensor to chloroform vapor is 0.02 nm/ppm with the response time $t-25\ \text{s}$.
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聚合物/银纳米复合材料在氯仿检测中的应用
本文报道了银纳米粒子以二维阵列嵌入聚甲基丙烯酸缩水甘油酯基质中的消光光谱的变化。在光谱中确定了两个集体表面等离子体模式,记为P和T。它们分别与垂直于阵列平面和平行于阵列平面的电偶极子相关联。实验发现,当纳米复合材料暴露于氯仿蒸汽中时,相应波段的强度和带宽降低。与此同时,两个等离子体带都向更短的波长移动。这些依赖关系可以解释为邻近纳米颗粒之间LSPR的电动力学耦合减弱,这是由于聚合物基质膨胀导致颗粒之间距离的增加。光谱变化是完全可逆的。结果表明,该传感器对氯仿蒸气的灵敏度为0.02 nm/ppm,响应时间为$t-25\ \text{s}$。
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