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Crystalline Transformation of Colloidal Nanopartides on Graphene Oxide

机译:氧化石墨烯上胶态纳米粒子的晶体转变

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Emergence of novel two-dimensional (2-D) templates, e.g., graphene oxide, has signified new intriguing opportunities to couple nanocrystals electronically to the microscopic 2-D contacts. A promising approach to uniform dispersion of inorganic nanocrystals on the 2-D interfaces is to graft them through chemical bonding. The 2-D dispersion would offer a unique opportunity to address one of the primary challenges in the field of nanotechnology; fulfilling excellent chemical and physical properties of the nanocrystals in electronic solid-state devices. In this study, we blended colloidal nanocrystals with graphene oxide in aqueous solution in attempts to bind the nanocrystals on reactive sites of thegraphene oxide surface, thereby achieving uniform loading. Interestingly, the nanocrystals undergo significant crystalline transformation even under relatively moderate reaction conditions. The growth of particle size and the drastic crystalline deformation, e.g., from wurtzite CdSe to amorphous Se, appear to take place in the proximity of acidic functional groups on graphene oxide. Photocarriers also play a key role in the reaction; under room light, the transformation yielded dramatic size increase and crystalline transformation, whereas in the dark, the change was suppressed. The experimental results presented in this study provide guidelines for uniform 2-D loading of colloidal nanocrystals on graphene oxide. The findings suggest that the surface acidity be titrated for colloidal nanocrystals to deposit on the graphitic layer and to avoid unwanted changes of nanocrystal size and properties.
机译:新颖的二维(2-D)模板(例如氧化石墨烯)的出现标志着将纳米晶体电子耦合到微观2-D触点的新的有趣机会。将无机纳米晶体均匀分散在二维界面上的一种有前途的方法是通过化学键接接它们。二维色散将为解决纳米技术领域的主要挑战之一提供独特的机会。满足电子固态设备中纳米晶体的出色化学和物理特性。在这项研究中,我们将胶体纳米晶体与氧化石墨烯在水溶液中混合,以试图将纳米晶体结合在氧化石墨烯表面的反应位点上,从而实现均匀加载。有趣的是,即使在相对适中的反应条件下,纳米晶体也经历显着的晶体转变。粒径的增长和剧烈的晶体变形,例如从纤锌矿CdSe变成非晶态Se,似乎发生在氧化石墨烯上酸性官能团的附近。光电载体在反应中也起着关键作用。在室内光下,该转变产生了急剧的尺寸增加和晶体转变,而在黑暗中,该转变被抑制了。在这项研究中提出的实验结果为胶体纳米晶体在氧化石墨烯上的均匀二维加载提供了指导。这些发现表明,胶体纳米晶体的表面酸度需要滴定,以沉积在石墨层上,并避免纳米晶体尺寸和性能发生不必要的变化。

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