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Simultaneous Multication Exchange Pathway to High-Entropy Metal Sulfide Nanoparticles

机译:高熵金属硫化物纳米粒子的同时多匹配交换通路

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摘要

High entropy materials, which contain a large number of randomly distributed elements, have unique catalytic, electrochemical, and mechanical properties. The high configura- tional entropy of the randomized elements drives the formation of high entropy materials; therefore, high temperatures and quenching are typically required to stabilize them. Because of this, colloidal nanoparticles of high entropy materials are difficult to synthesize and remain rare, despite their desirable high surface areas and solution dispersibilities. Here, we introduce simultaneous multication exchange as an alternative low-temperature pathway to colloidal nanoparticles of high entropy materials. Roxbyite Cu_(1.8)S nanoparticles react with a substoichiometric mixture of Zn~(2+), Co~(2+), In~(3+), and Ga~(3+) to produce nanoparticles of the high entropy metal sulfide Zn_(0.25)Co_(0.22)Cu_(0.28)In_(0.16)Ga_(0.11)S. The Zn_(0.25)Co_(0.22)Cu_(0.28)In_(0.16)Ga_(0.11)S nanoparticles are thermally stable, and exchange reactions using fewer cations do not produce the high entropy phase. The use of colloidal nanoparticle cation exchange as a synthetic platform provides both entropic and enthalpic driving forces that, in addition to configurational entropy, enable the formation of high entropy phases at solution-accessible temperatures.
机译:高熵材料,含有大量随机分布的元件,具有独特的催化,电化学和机械性能。随机元素的高配置熵驱动了高熵材料的形成;因此,通常需要高温和淬火来稳定它们。因此,尽管其所需的高表面积和溶液分散性,但难以合成并保持罕见的高熵材料的胶体纳米颗粒。这里,我们将同时的多匹配交换引入替代低温途径的高熵材料的胶体纳米粒子。 RoxByite Cu_(1.8)的纳米颗粒与Zn〜(2+),Co〜(2+),〜(3+)和Ga〜(3+)中的含量混合物反应,以生产高熵金属硫化物的纳米颗粒Zn_(0.25)CO_(0.22)CU_(0.28)IN_(0.16)GA_(0.11)S。 Zn_(0.25)CO_(0.22)Cu_(0.28)In_(0.16)Ga_(0.11)S纳米颗粒是热稳定的,并且使用较少阳离子的交换反应不会产生高熵阶段。胶体纳米颗粒阳离子交换作为合成平台的使用提供了熵和焓驱动力,除了配置熵之外,还可以在溶液可接近的温度下形成高熵阶段。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2021年第2期|1017-1023|共7页
  • 作者单位

    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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