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Micellar Nanoreactors-Preparation and Characterization of Hexagonally Ordered Arrays of Metallic Nanodots

机译:胶束纳米反应器-金属纳米点的六角形排列的制备和表征

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The preparatio of hexagonally ordered metallic nanodots was studied in detail with emphasis on the chemical state of the resulting particles. To obtain these dots, in a first step micellar structures were formed from diblock copolymers in solution. The reverse micelles themselves are capable of ligating defined amounts of a metal salt within their cores, acting as nanoreactors. After transfer of the metal-loaded reverse micelles onto a substrate, the polymer was removed by means of different plasmas (oxygen, and/or hydrogen), which also allow the metal salt to be reduced to the metallic state. In this way, ordered arrays of metallic nanodots can be prepared on various substrates. By adjusting the appropriate parameters, the separation and the size of the dots can be varied and controlled. To determine their purity, chemical state, and surface cleaniness-all of which are crucial for subsequent experiments since nanoscale structures are intrinsically surface dominated0in situ X-ray photoelectron spectroscopy (XPS) and ex-situ transmission electron microscopy (TEM) were applied, also giving information on the formatin of the nanodots.
机译:对六方有序金属纳米点的制备进行了详细研究,重点是所得颗粒的化学状态。为了获得这些点,在第一步中,由溶液中的二嵌段共聚物形成胶束结构。反胶束本身能够在其核心内连接一定量的金属盐,用作纳米反应器。在将负载金属的反胶束转移到基底上之后,通过不同的等离子体(氧气和/或氢气)除去聚合物,这也使金属盐还原为金属态。以这种方式,可以在各种基板上制备金属纳米点的有序阵列。通过调整适当的参数,可以改变和控制点的间距和大小。为了确定它们的纯度,化学状态和表面清洁度-所有这些对于后续实验都是至关重要的,因为纳米结构本质上是表面主导的原位X射线光电子能谱(XPS)和异位透射电子显微镜(TEM),提供有关nanodots的formatin的信息。

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