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- W2891844257 endingPage "391" @default.
- W2891844257 startingPage "375" @default.
- W2891844257 abstract "The optical properties of metal nanoparticles, particularly their localized surface plasmon effects, are well established. These plasmonic nanoparticles can respond to their surroundings or even influence the optical processes (for example, absorption, fluorescence and Raman scattering) of molecules located at their surface. As a result, plasmonic nanoparticles have been developed for multiple purposes, ranging from the detection of chemicals and biological molecules to light-harvesting enhancement in solar cells. By dispersing the nanoparticles in polymers and creating a hybrid material, the robustness, responsiveness and flexibility of the system are enhanced while preserving the intrinsic properties of the nanoparticles. In this Review, we discuss the fabrication and applications of plasmonic polymer nanocomposites, focusing on applications in optical data storage, sensing and imaging and photothermal gels for in vivo therapy. Within the nanocomposites, the nanoporosity of the matrix, the overall mechanical stability and the dispersion of the nanoparticles are important parameters for achieving the best performance. In the future, translation of these materials into commercial products rests on the ability to scale up the production of plasmonic polymer nanocomposites with tailored optical features. A responsive material in the form of a polymer or hydrogel can be combined with a signal transduction element in the form of plasmonic particles, resulting in hybrid plasmonic polymer nanocomposites. In this Review, the fabrication and applications of such nanocomposites are discussed. The applications described focus on optical data storage, sensing and imaging and the use of photothermal gels for in vivo therapy." @default.
- W2891844257 created "2018-09-27" @default.
- W2891844257 creator A5003324767 @default.
- W2891844257 creator A5017320817 @default.
- W2891844257 creator A5039188733 @default.
- W2891844257 creator A5040921685 @default.
- W2891844257 creator A5064970528 @default.
- W2891844257 date "2018-09-11" @default.
- W2891844257 modified "2023-10-16" @default.
- W2891844257 title "Plasmonic polymer nanocomposites" @default.
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