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Collective topo-epitaxy in the self-assembly of a 3D quantum dot superlattice

机译:3D量子点超晶格自组装中的集体拓扑外延

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摘要

Epitaxially fused colloidal quantum dot (QD) superlattices (epi-SLs) may enable a new class of semiconductors that combine the size-tunable photophysics of QDs with bulk-like electronic performance, but progress is hindered by a poor understanding of epi-SL formation and surface chemistry. Here we use X-ray scattering and correlative electron imaging and diffraction of individual SL grains to determine the formation mechanism of three-dimensional PbSe QD epi-SL films. We show that the epi-SL forms from a rhombohedrally distorted body centred cubic parent SL via a phase transition in which the QDs translate with minimal rotation (~10°) and epitaxially fuse across their {100} facets in three dimensions. This collective epitaxial transformation is atomically topotactic across the 10~3-10~5 QDs in each SL grain. Infilling the epi-SLs with alumina by atomic layer deposition greatly changes their electrical properties without affecting the superlattice structure. Our work establishes the formation mechanism of three-dimensional QD epi-SLs and illustrates the critical importance of surface chemistry to charge transport in these materials.
机译:外延融合的胶体量子点(QD)超晶格(epi-SLs)可能使一类新型的半导体结合了QDs的尺寸可调光物理特性和类似大块的电子性能,但对Epi-SL形成的了解不足阻碍了这一进展和表面化学。在这里,我们使用X射线散射和相关电子成像以及单个SL晶粒的衍射来确定三维PbSe QD Epi-SL膜的形成机理。我们显示Epi-SL是通过相变的形式从菱形扭曲的体心立方母体SL形成的,其中QD以最小的旋转角度(〜10°)平移,并在三个维度上沿{100}晶面外延融合。这种集体外延转变在每个SL晶粒中的10〜3-10〜5个QD上都是原子性的。通过原子层沉积用氧化铝填充Epi-SL可以极大地改变其电学特性,而不会影响超晶格结构。我们的工作建立了三维QD epi-SL的形成机理,并说明了表面化学对于这些材料中电荷传输的至关重要。

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  • 来源
    《Nature Materials》 |2020年第1期|49-55|共7页
  • 作者单位

    department of Materials Science and Engineering University of California Irvine Irvine CA USA These authors contributed equally: Alex Abelson Caroline Qian;

    department of Chemical and Biomolecular Engineering University of California Irvine Irvine CA USA These authors contributed equally: Alex Abelson Caroline Qian;

    department of Physics and Astronomy University of California Irvine Irvine CA USA;

    department of Materials Science and Engineering University of California Irvine Irvine CA USA;

    Irvine Materials Research Institute University of California Irvine Irvine CA USA;

    department of Materials Science and Engineering University of California Irvine Irvine CA USA department of Chemical and Biomolecular Engineering University of California Irvine Irvine CA USA department of Chemistry University of California Irvine Irvine CA USA;

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