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由 Pt 纳米立方体组装的钝角菱形超晶格。

An Obtuse Rhombohedral Superlattice Assembled by Pt Nanocubes.

机构信息

Department of Chemistry, State University of New York at Binghamton , Binghamton, New York 13902, United States.

出版信息

Nano Lett. 2015 Sep 9;15(9):6254-60. doi: 10.1021/acs.nanolett.5b02879. Epub 2015 Aug 19.

Abstract

We grew large single three-dimensional supercrystals from colloidal Pt nanocubes (NCs) suspended in hexane. A synchrotron-based two circle diffractometer was used to obtain an unprecedented level of detail from full sets of small/wide-angle X-ray scattering (SAXS/WAXS) patterns. Automatic indexing and simulations of X-ray patterns enabled detailed reconstruction of NC translation and shape orientation within the supercrystals from atomic to mesometric levels. The supercrystal has an obtuse rhombohedral (Rh) superlattice with space group R3m and a trigonal cell angle of 106.2°. Individual NCs orient themselves in a manner of atomic Pt[111] parallel to superlattice Rh[111]. We analyzed the superlattice structure in context of three spatial relationships of proximate NCs including face-to-face, edge-to-edge, and corner-to-corner configurations. Detailed analysis of supercrystal structure reveals nearly direct corner-to-corner contacts and a tight interlocking NC structure. We employed the correlations between strain and lattice distortion and established the first structural correlating mechanism between five superlattice polymorphs to elucidate the superlattice transformations and associated developing pathways. Together, the experimental and modeling results provide comprehensive structural information toward controlling design and efficient materials-processing for large fabrication of nanobased functional materials with tailored structures and desired properties.

摘要

我们从悬于正己烷中的胶体 Pt 纳米立方体 (NC) 中生长出大型单个三维超晶体。采用基于同步加速器的双圆衍射仪,从全系列小角/广角 X 射线散射 (SAXS/WAXS) 图谱中获得了前所未有的详细信息。X 射线图谱的自动索引和模拟使我们能够从原子到介观水平详细重建超晶体中 NC 的平移和形状取向。该超晶体具有钝角菱面体 (Rh) 超晶格,空间群为 R3m,三角晶胞角为 106.2°。单个 NC 以原子 Pt[111]平行于超晶格 Rh[111]的方式定向。我们分析了超晶格结构与三个临近 NC 之间的空间关系,包括面对面、边对边和角对角配置。对超晶体结构的详细分析揭示了近乎直接的角对角接触和紧密联锁的 NC 结构。我们利用应变与晶格畸变之间的相关性,建立了五个超晶格多型体之间的第一个结构相关机制,以阐明超晶格转变及其相关的发展途径。总之,实验和建模结果提供了全面的结构信息,有助于控制设计并高效地加工具有特定结构和所需性能的基于纳米的功能材料。

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