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首页> 外文期刊>ACS nano >Unraveling the Spatial Distribution of Catalytic Non-Cubic Au Phases in a Bipyramidal Microcrystallite by X-ray Diffraction Microscopy
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Unraveling the Spatial Distribution of Catalytic Non-Cubic Au Phases in a Bipyramidal Microcrystallite by X-ray Diffraction Microscopy

机译:通过X射线衍射显微镜揭示X射线微晶催化非立方Au相的空间分布

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Tuning of crystal structures and shapes of submicrometer-sized noble metals have revealed fascinating catalytic, optical, electrical, and magnetic properties that enable developments of environmentally friendly and durable nanotechnological applications. Several attempts have been made to stabilize Au, knowing its extraordinary stability in its conventional face-centered cubic (fcc) lattice, into different lattices, particularly to develop Au-based catalysis for industry. Here, we report the results from scanning X-ray diffraction microscopy (SXDM) measurements on an ambient-stable penta-twinned bipyramidal Au microcrystallite (about 1.36 μm in length and 230 nm in diameter) stabilized in noncubic lattice, exhibiting catalytic properties. With more than 82% of the crystal volume, the majority crystallite structure is identified as body-centered orthorhombic (bco), while the remainder is the standard fcc. A careful analysis of the diffraction maps reveals that the tips are made up of fcc, while the body contains mainly bco with very high strain. The reported structural imaging technique of representative single crystallite will be useful to investigate the growth mechanism of similar multiphase nano- and micrometer-sized crystals.
机译:调整晶体分子尺寸贵金属的晶体结构和形状透露了令人欣慰的催化,光学,电气和磁性,使环保和耐用的纳米技术应用的开发能够。已经进行了几次尝试稳定AU,以传统的脸部中心立方(FCC)格子在不同的格子中知道其非凡稳定性,特别是开发基于AU的工业催化。在这里,我们将扫描X射线衍射显微镜(SXDM)测量的结果报告在环境稳定的PENTA-TRINNED BIZYLITE AU微晶(长度为约1.36μm,直径为230nm)上,稳定在非立体晶格中,表现出催化性质。含有超过82%的晶体体积,大多数晶体结构被鉴定为以体为中心的正反球(BCO),而其余的是标准FCC。仔细分析衍射图揭示了提示由FCC组成,而主体主要包含BCO,具有非常高的应变。所报道的代表性单晶的结构成像技术将有助于研究类似的多相纳米和千分尺寸晶体的生长机理。

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