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Noble metal plasmonic nanostructure related chromisms
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作者 Chao Zhang Ling-Dong Sun Chun-Hua Yan 《Inorganic Chemistry Frontiers》 2016年第2期203-217,共15页
Chromism focuses on the phenomena of color change,and the studies in the related area have conventionally been centered on organic dyes.In recent decades,noble metal nanostructures,featured with rich optical propertie... Chromism focuses on the phenomena of color change,and the studies in the related area have conventionally been centered on organic dyes.In recent decades,noble metal nanostructures,featured with rich optical properties arising from their characteristic localized surface plasmon resonances,have emerged as an alternative family of color-rendering agents,and have therefore been introducing new trends into the research realm of chromisms.Here in this review we summarize the related studies on noble metal plasmonic nanostructure related chromisms,which are sorted into four major categories,namely,solvatochromism,sorptiochromism,aggregachromism and chronochromism.For each category,the basic principles(some with comparison to those for dye-related systems)are delineated,followed with examples illustrating the performances and utilizations of representative systems.Of note,we put particular emphasis on the category of chronochromism,which,in our opinion,has not received as much deserved attention yet promises great potential in practical applications.In the final section,we discuss the challenges that plasmonic nanostructures are currently facing,and outlook the opportunities that may emerge in the near future. 展开更多
关键词 organic dyesin sorptiochromism surface plasmon resonanceshave solvatochromism noble metal plasmoni plasmonic nanostructures metal nanostructuresfeatured chromism
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非线性光学研究新进展 被引量:1
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作者 易明芳 《安庆师范学院学报(自然科学版)》 2010年第1期50-56,共7页
非线性光学的研究包括从物质与激发的相互作用的基本原理到用于光通信、医疗及生物技术的设备、元件和系统的研究。近些年来,围绕非线性光学的基础理论与应用研究主要集中源技术、光通信技术及材料的非线性调控等几个方面。在激光光源方... 非线性光学的研究包括从物质与激发的相互作用的基本原理到用于光通信、医疗及生物技术的设备、元件和系统的研究。近些年来,围绕非线性光学的基础理论与应用研究主要集中源技术、光通信技术及材料的非线性调控等几个方面。在激光光源方面,强场和阿秒非线性光学得到了广泛的研究,白光激光光源也得到了人们的关注;在光通信领域,通过微纳结构光波导的设计来调控其色散特性,达到信号无损传输或光路集成的应用目的;而光学非线性研究离不开材料,因此,微腔和表面等离子体调控光学非线性成为人们研究的热点。 展开更多
关键词 非线性光学 阿秒光学 光波导 微腔 表面等离子体
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