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Thermo-responsive plasmonic nanohybrids with tunable optical properties

机译:具有可调谐光学性能的热响应性等离子体纳米嗜含量

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摘要

In this paper, we study the temperature-dependent optical properties of gold-silver core-shell (Au@Ag) nanorods coated by a thermo-responsive polymer poly (N-isopropylacrylamide) (PNIPAM). The wavelength of the plasmonic resonant absorption of the nanohybrids changes with temperature due to the combination effects of the plasmon resonance of the core and the thermal response of the shell. Using effective medium theory, we find that with increase of temperature, the absorption peak red-shifts due to the competition effects from the changes of the thickness and the effective refractive index of the polymer shell. The working wavelength can be tuned by the aspect ratio of nanorods. Moreover, the temperature sensitivity of plasmon resonance increases with the increase of the aspect ratio. Our studies provide a proof-of-concept design of thermal responsive plasmonic smart material.
机译:在本文中,我们研究了热响应聚合物聚(N-异丙基丙烯酰胺)(PNIPAM)涂覆的金银芯 - 壳(Au @ Ag)纳米棒的温度依赖性光学性质。 由于芯的等离子体共振的组合效应和壳体的热响应,纳米冬小放的波长随温度而变化。 利用有效的媒介理论,我们发现随着温度的增加,由于竞争效应来自聚合物壳的厚度和有效折射率的竞争影响,吸收峰值变化。 可以通过纳米棒的纵横比调节工作波长。 而且,随着纵横比的增加,等离子体共振的温度敏感性增加。 我们的研究提供了热响应性等离子体智能材料的概念验证设计。

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