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Emergence and Control of Stacking Fault Formation during Nanoparticle Cation Exchange Reactions

机译:纳米粒子阳离子交换反应期间堆垛性故障形成的出现与控制

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摘要

Cation exchange reactions modify the composition of a nanocrystal while retaining other features, including the crystal structure and morphology. In many cases, the anion sublattice is considered to be locked in place as cations rapidly shuttle in and out. Here we provide evidence that the anion sublattice can shift significantly during nanocrystal cation exchange reactions. When the Cu~+ cations of roxbyite Cu_(1.8)S nanorods exchange with Zn~(2+) to form ZnS nanorods, a high density of stacking faults emerges. During cation exchange, the stacking sequence of the close-packed anion sublattice shifts at many locations to generate a nanorod product containing a mixture of wurtzite, zincblende, and a wurtzite/zincblende polytype that contains an ordered arrangement of stacking faults. The reagent concentration and reaction temperature, which control the cation exchange rate, serve as synthetic levers that can tune the stacking fault density from high to low, which is important because once introduced, the stacking faults could not be modified through thermal annealing. This level of synthetic control through nanocrystal cation exchange is important for controlling properties that depend on the presence and density of stacking faults.
机译:阳离子交换反应改性纳米晶体的组成,同时保持其他特征,包括晶体结构和形态。在许多情况下,随着阳离迅速穿梭于进出的阳果,Anion Sublattice被认为被锁定到位。在这里,我们提供了在纳米晶体阳离子交换反应期间的阴离子子分离的证据表明Anion子组。当RoxByite Cu_(1.8)S纳米杆的Cu〜+阳离子与Zn〜(2+)交换时形成ZnS纳米棒,所以堆叠故障的高密度出现。在阳离子交换期间,封闭的阴离子子分子的堆叠序列在许多位置移动,以产生含有含有紫立岩,锌强子和紫硝基脲/ Zincblende多型的混合物的纳米棒产物,其含有堆叠断层的有序排列。控制阳离子汇率的试剂浓度和反应温度用作可以将堆叠故障密度从高到低电平调节的合成杆,这是重要的,这是一个重要的,因为一旦引入,堆垛机故障无法通过热退火来修改堆叠故障。通过纳米晶体阳离子交换的这种合成控制水平对于控制依赖于堆叠故障的存在和密度的性能非常重要。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第4期|1779-1783|共5页
  • 作者单位

    Department of Chemistry The Pennsylvania State University University Park Pennsylvania 16802 United States;

    Department of Chemistry The Pennsylvania State University University Park Pennsylvania 16802 United States;

    Department of Chemistry Department of Chemical Engineering and Materials Research Institute The Pennsylvania State University University Park Pennsylvania 16802 United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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