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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Multiresponsive Hybrid Colloids Based on Gold Nanorods and Poly(NIPAM-co-allylacetic acid) Microgels: Temperature- and pH-Tunable Plasmon Resonance
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Multiresponsive Hybrid Colloids Based on Gold Nanorods and Poly(NIPAM-co-allylacetic acid) Microgels: Temperature- and pH-Tunable Plasmon Resonance

机译:基于金纳米棒和聚(NIPAM-共烯丙酸)微凝胶的多响应杂化胶体:可调节温度和pH的等离子体共振

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摘要

This work describes the control and manipulation of the optical properties of multiresponsive organic/inorganic hybrid colloids, which consist of thermo-responsive poly-(NIPAM-co-allylacctic acid) microgel cores and gold nanorods assembled on their surface. These composites are multifunctional, in the sense that they combine the interesting optical properties of the rod-shaped gold particles-exhibiting two well-differentiated plasmon modes-with the sensitivity of the copolymer microgel toward external stimuli, such is temperature or solution pH. It is shown that the collapse of the microgel core, induced by changes in either temperature or pH, enhances the electronic interactions between the gold nanorods on the gel surface, as a result of the subsequent increase of the packing density arising from the surface decrease of the collapsed microgel. Above a certain nanorod density, such interactions lead to remarkable red-shifts of the longitudinal plasmon resonance.
机译:这项工作描述了多响应有机/无机杂化胶体的光学特性的控制和操作,该复合胶体由热响应性聚(NIPAM-共烯丙酸)微凝胶核和组装在其表面上的金纳米棒组成。这些复合物是多功能的,从某种意义上说,它们将杆状金颗粒表现出令人感兴趣的光学特性(表现出两种高度分化的等离振子模式)与共聚物微凝胶对外部刺激(例如温度或溶液pH)的敏感性相结合。结果表明,由于温度或pH的变化引起的微凝胶核的塌陷增强了凝胶表面上金纳米棒之间的电子相互作用,这是由于表面的降低导致堆积密度的随后增加的结果。崩溃的微凝胶。在一定的纳米棒密度之上,这种相互作用导致纵向等离子体激元共振的显着红移。

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