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首页> 外文期刊>Journal of the American Chemical Society >Experimental Confirmation of a Topological Isomer of the Ubiquitous Au_(25)(SR)_(18) Cluster in the Gas Phase
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Experimental Confirmation of a Topological Isomer of the Ubiquitous Au_(25)(SR)_(18) Cluster in the Gas Phase

机译:在气相中普遍存在的AU_(25)(SR)_(18)簇簇的拓扑异构体的实验证实

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摘要

High-resolution electrospray ionization ion mobility mass spectrometry has revealed a gas-phase isomer of the ubiquitous, extremely well-studied Au_(25)(SR)_(18) cluster both in anionic and cationic form. The relative abundance of the isomeric structures can be controlled by in-source activation. The measured collision cross section of the new isomer agrees extremely well with a recent theoretical prediction (Matus, M. F.; et al. Chem. Commun. 2020, 56, 8087) corresponding to a Au_(25)(SR)_(18)~- isomer that is energetically close and topologically connected to the known ground-state structure via a simple rotation of the gold core without breaking any Au-S bonds. The results imply that the structural dynamics leading to isomerization of thiolate-protected gold clusters may play an important role in their gas-phase reactions and that isomerization could be controlled by external stimuli.
机译:高分辨率电喷雾电离离子迁移率质谱仪揭示了在阴离子和阳离子形式的普遍存在的,极良好地研究的普遍良好的,极良好地研究的Au_(25)(SR)_(18)簇的气相异构体。可以通过源极激活来控制异构结构的相对丰度。新的异构体的测量碰撞横截面与最近的理论预测(Matus,MF;等。Chem。Comm.2020,56,8087)对应于AU_(25)(SR)_(18)〜 - 异构体通过金芯的简单旋转而在不破坏任何AU-S键的情况下通过金芯的简单旋转闭合和拓扑地连接到已知的地面结构。结果意味着导致硫醇酸酯保护金簇的异构化的结构动态可能在其气相反应中起重要作用,并且可以通过外部刺激来控制异构化。

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  • 来源
    《Journal of the American Chemical Society》 |2021年第3期|1273-1277|共5页
  • 作者单位

    Department of Chemistry Nanoscience Center University of Jyvaeskylae FI-40014 Jyvaeskylae Finland;

    Department of Physics Nanoscience Center University of Jyvaeskylae FI-40014 Jyvaeskylae Finland;

    Department of Physics Nanoscience Center University of Jyvaeskylae FI-40014 Jyvaeskylae Finland;

    Department of Physical Chemistry University of Geneva 1211 Geneva Switzerland;

    Department of Physical Chemistry University of Geneva 1211 Geneva Switzerland;

    Department of Chemistry Nanoscience Center and Department of Physics Nanoscience Center University of Jyvaeskylae FI-40014 Jyvaskyld Finland;

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  • 原文格式 PDF
  • 正文语种 eng
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