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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Laser-Induced Functionalization of Organo/Carbon Interfaces for Selective Adsorption of Au Nanoparticles in Microsized Domains
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Laser-Induced Functionalization of Organo/Carbon Interfaces for Selective Adsorption of Au Nanoparticles in Microsized Domains

机译:有机/碳界面的激光诱导的官能化,用于在微晶结构域中选择性吸附Au纳米粒子

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Laser microprocessing of highly oriented pyrolytic graphite (HOPG) in conjunction with chemical functionalization routines is used to fabricate functional microsized domains. Infrared and Auger electron spectroscopy, contact angle measurements, and electron microscopy are used for characterization of laser-fabricated structures. HOPG samples are coated with alkylsiloxane monolayers. Laser-induced bromination of coated HOPG samples in gaseous bromine is carried out using a microfocused laser beam at a wavelength of 514 nm and 1/e(2) laser spot diameter of about 2 mu m. Subsequent azidation and amination results in functional domains with sizes in the range of 1.2 to 40 mu m and more. At low laser powers and irradiation times fully functionalized circular-shaped structures are formed. At high laser powers and irradiation times laser processing results in decomposition of the organic monolayer and substrate in the center of the structures yielding donut-shaped structures. After laser processing and chemical transformation Au nanoparticles are selectively adsorbed onto the functional domains. This provides an opportunity to build up functional nanoparticle microarrays on carbon-based materials, e.g., for applications in sensing and electrocatalysis.
机译:与化学官能例程结合高定向热解石墨(HOPG)的激光微加工用于制造功能性microsized域。红外和俄歇电子光谱法,接触角测量,和电子显微镜被用于激光制造的结构的表征。 HOPG样品涂覆有烷基硅氧烷单层。在气态溴涂覆HOPG的样品的激光诱导的溴化进行在514 nm和的1 / e的约2微米(2)激光光斑直径的波长使用microfocused激光束。与在1.2至40微米范围内的尺寸的功能域随后叠氮化和胺化的结果m,更。在低激光功率和照射时间,形成完全官能圆形的结构。在高的激光功率,并且在得到炸面圈形状的结构的结构的中心的有机单分子层和基片的分解的辐照时间的激光加工的结果。激光处理和化学转化后的Au纳米颗粒被选择性地吸附在功能结构域。这提供了建立在基于碳的材料,例如功能纳米颗粒的微阵列,用于在感测和电催化应用的机会。

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