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首页> 外文期刊>Angewandte Chemie >Anomalous Light-Induced Spin-State Switching for Iron(II) Spin-Crossover Molecules in Direct Contact with Metal Surfaces
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Anomalous Light-Induced Spin-State Switching for Iron(II) Spin-Crossover Molecules in Direct Contact with Metal Surfaces

机译:用于铁(II)旋转分子的异常光诱导的旋转状态切换与金属表面直接接触

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摘要

Light-induced spin-state switching is one of the most attractive properties of spin-crossover materials. In bulk, low-spin (LS) to high-spin (HS) conversion via the light-induced excited spin-state trapping (LIESST) effect may be achieved with a visible light, while the HS-to-LS one (reverse-LIESST) requires an excitation in the near-infrared range. Now, it is shown that those phenomena are strongly modified at the interface with a metal. Indeed, an anomalous spin conversion is presented from HS state to LS state under blue light illumination for Fe-II spin-crossover molecules that are in direct contact with metallic (111) single-crystal surfaces (copper, silver, and gold). To interpret this anomalous spin-state switching, a new mechanism is proposed for the spin conversion based on the light absorption by the substrate that can generate low energy valence photoelectrons promoting molecular vibrational excitations and subsequent spin-state switching at the molecule-metal interface.
机译:光诱导的旋转状态切换是旋转交叉材料最具吸引力的特性之一。 通过可见光可以实现通过光引起的激发旋转状态捕获(Liesst)效应的低旋转(LS)转换(LS)转换,而HS-TO-LS ONE(反向 - Liesst)在近红外线范围内需要激励。 现在,表明这些现象在具有金属的界面处强烈修改。 实际上,在Fe-II旋转交叉分子的蓝光照射下,从HS状态向LS状态提出了异常的旋转转化率,所述FE-II旋转分子与金属(111)单晶表面(铜,银和金)直接接触。 为了解释这种异常的自旋状态切换,提出了一种基于基材的光吸收的旋转转换的新机构,其可以产生促进分子 - 金属界面处的分子振动激发和随后的旋转状态切换的低能量价光电子。

著录项

  • 来源
    《Angewandte Chemie》 |2020年第32期|共6页
  • 作者单位

    Sorbonne Univ Inst Mineral Phys Mat &

    Cosmochim CNRS UMR7590 MNHN F-75252 Paris 5 France;

    Univ Paris Lab Mat &

    Phenomenes Quant CNRS F-75013 Paris France;

    Univ Paris Lab Mat &

    Phenomenes Quant CNRS F-75013 Paris France;

    Univ Paris Lab Mat &

    Phenomenes Quant CNRS F-75013 Paris France;

    Univ Paris Lab Mat &

    Phenomenes Quant CNRS F-75013 Paris France;

    Univ Paris Lab Mat &

    Phenomenes Quant CNRS F-75013 Paris France;

    Univ Paris Lab Mat &

    Phenomenes Quant CNRS F-75013 Paris France;

    Univ Paris Lab Mat &

    Phenomenes Quant CNRS F-75013 Paris France;

    Univ Paris Saclay Univ Paris Sud Inst Chim Mol Mat Orsay CNRS UMR 8182 F-91405 Orsay France;

    Univ Paris Saclay Univ Paris Sud Inst Chim Mol Mat Orsay CNRS UMR 8182 F-91405 Orsay France;

    Univ Paris Saclay Univ Paris Sud Inst Chim Mol Mat Orsay CNRS UMR 8182 F-91405 Orsay France;

    Synchrotron SOLEIL L Orme Merisiers F-91192 Gif Sur Yvette France;

    Sorbonne Univ Inst Mineral Phys Mat &

    Cosmochim CNRS UMR7590 MNHN F-75252 Paris 5 France;

    Sorbonne Univ Inst Mineral Phys Mat &

    Cosmochim CNRS UMR7590 MNHN F-75252 Paris 5 France;

    Univ Paris Lab Mat &

    Phenomenes Quant CNRS F-75013 Paris France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用化学;
  • 关键词

    ferrous ion complexes; light conversion; monolayer; spin-crossover; X-ray absorption;

    机译:铁离子复合物;光转化;单层;旋转交叉;X射线吸收;

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