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Soft landing of bare nanoparticles with controlled size, composition, and morphology

机译:软着陆的纳米粒子与控制大小、成分和形态

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摘要

Physical synthesis employing magnetron sputtering and gas aggregation in a modified commercial source has been coupled with size-selection and ion soft landing to prepare bare nanoparticles on surfaces with controlled coverage, size, composition, and morphology. Employing atomic force microscopy (AFM) and scanning electron microscopy (SEM), it is demonstrated that the size and coverage of nanoparticles on flat and stepped surfaces may be controlled using a quadrupole mass filter and the length of deposition, respectively. AFM shows that nanoparticles bind randomly to flat surfaces when soft landed at relatively low coverage (4 x 10(4) ions mu m(-2)). On stepped surfaces at intermediate coverage (4 x 10(5) ions mu m(-2)) nanoparticles bind along step edges forming extended linear chains. At the highest coverage (2 x 10(6) ions mu m(-2)) nanoparticles form a continuous film on flat surfaces. On one surface with sizable defects, the presence of localized imperfections results in agglomeration of nanoparticles onto these features and formation of neighboring zones devoid of particles. Employing high resolution scanning transmission electron microscopy (STEM) and electron energy loss spectroscopy (EELS) the customized magnetron sputtering/gas aggregation source is demonstrated to produce bare single metal particles with controlled morphology as well as bimetallic alloy nanoparticles with defined core-shell structures of that are of interest to catalysis.
机译:物理综合采用磁控溅射和天然气聚集在一个修改后的商业加上尺寸选择和来源离子软着陆准备光秃秃的纳米颗粒表面覆盖,控制大小,成分和形态。力显微镜(AFM)和扫描电子显微镜(SEM),证明了纳米粒子的大小和覆盖在平坦加强表面可能控制使用四极滤质器的长度分别沉积。纳米粒子绑定时随机平面软降落在相对较低的覆盖率(4 x 10 (4)离子μm(2))。中间覆盖(4 x 10(5)离子μm (2))纳米粒子绑定步骤边缘形成扩展线性链。(2 x 10μm(2))(6)离子纳米颗粒形成在平面连续电影。有相当大的缺陷,存在局限性缺陷聚集的结果纳米粒子在这些特性和形成邻近区域没有粒子。采用高分辨率扫描传输电子显微镜(STEM)和电子能量损失能谱法(鳗鱼)定制的磁控管溅射气体/聚合源生产单一金属颗粒控制形态以及双金属合金核壳结构纳米粒子与定义感兴趣的催化。

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