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Ultrasmall gold nanoparticles anchored to graphene and enhanced photothermal effects by laser irradiation of gold nanostructures in graphene oxide solutions

机译:超小型金纳米颗粒锚固在石墨烯上,并通过激光辐照氧化石墨烯溶液中的金纳米结构增强光热效应

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摘要

In this work we demonstrate the coupling of the photothermal effects of gold nanostructures of controlled size and shape with graphene oxide nanosheets dispersed in water. The enhanced photothermal effects can be tuned by controlling the shape and size of the gold nanostructures, which result in a remarkable increase in the heating efficiency of the laser-induced size reduction of gold nanostructures. The Raman spectra of the Au-graphene nanosheets provide direct evidence for the presence of more structural defects in the graphene lattice induced by laser irradiation of graphene oxide nanosheets in the presence of Au nanostructures. The large surface areas of the laser-reduced graphene oxide nanosheets with multiple defect sites and vacancies provide efficient nucleation sites for the ultrasmall gold nanoparticles with diameters of 2-4 nm to be anchored to the graphene surface. This defect filling mechanism decreases the mobility of the ultrasmall gold nanoparticles and, thus, stabilizes the particles against the Ostwald ripening process, which leads to a broad size distribution of the laser-size-reduced gold nanoparticles. The Au nanostructures/graphene oxide solutions and the ultrasmall gold-graphene nanocomposites are proposed as promising materials for photothermal therapy and for the efficient conversion of solar energy into usable heat for a variety of thermal, thermochemical, and thermomechanical applications.
机译:在这项工作中,我们证明了大小受控的金纳米结构的光热效应与分散在水中的氧化石墨烯纳米片的耦合。可以通过控制金纳米结构的形状和尺寸来调节增强的光热效应,这导致激光诱导的金纳米结构尺寸减小的加热效率显着提高。 Au-石墨烯纳米片的拉曼光谱为存在Au纳米结构的激光辐照氧化石墨烯纳米片引起的石墨烯晶格中存在更多结构缺陷提供了直接的证据。具有多个缺陷位点和空位的激光还原氧化石墨烯纳米片的大表面积为直径为2-4 nm的超小金纳米颗粒锚定在石墨烯表面提供了有效的成核位点。这种缺陷填充机制降低了超小金纳米颗粒的迁移率,因此使颗粒稳定,抵抗了奥斯特瓦尔德(Ostwald)成熟过程,这导致了激光尺寸减小的金纳米颗粒的尺寸分布较宽。提出了金纳米结构/氧化石墨烯溶液和超小型金-石墨烯纳米复合材料作为有前途的材料,可用于光热疗法以及将太阳能有效地转换为可用的热能,以用于各种热,热化学和热机械应用。

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