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Semiconductor nanocrystals covalently bound to solid inorganic surfaces using self-assembled monolayers

机译:半导体纳米晶体使用自组装单层共价键合到固体无机表面

摘要

Methods are described for attaching semiconductor nanocrystals to solid inorganic surfaces, using self-assembled bifunctional organic monolayers as bridge compounds. Two different techniques are presented. One relies on the formation of self-assembled monolayers on these surfaces. When exposed to solutions of nanocrystals, these bridge compounds bind the crystals and anchor them to the surface. The second technique attaches nanocrystals already coated with bridge compounds to the surfaces. Analyses indicate the presence of quantum confined clusters on the surfaces at the nanolayer level. These materials allow electron spectroscopies to be completed on condensed phase clusters, and represent a first step towards synthesis of an organized assembly of clusters. These new products are also disclosed.
机译:描述了使用自组装双功能有机单层作为桥化合物将半导体纳米晶体附着到固体无机表面的方法。提出了两种不同的技术。一种是在这些表面上形成自组装单层。当暴露于纳米晶体溶液时,这些桥化合物会结合晶体并将其锚定在表面上。第二种技术将已经被桥化合物涂覆的纳米晶体附着到表面上。分析表明在纳米层水平的表面上存在量子约束簇。这些材料可以使电子光谱学在凝聚相簇上完成,并且代表了朝着合成簇的有组织组装迈出的第一步。这些新产品也被披露。

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