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Magnetic Anisotropy Drives Magnetochiral Dichroism in a Chiral Molecular Helix Probed with Visible Light

机译:磁性各向异性驱动磁心二色性探测用可见光探测的手性分子螺旋

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摘要

Magnetochiral dichroism (MChD) is a nonrecipro-cal manifestation of light-matter interaction that can be observed in chiral magnetized systems. It features a differential absorption of unpolarized light depending on the relative orientation of the magnetic field and the light wavevector and on the absolute configuration of the system. The relevance of this effect for optical readout of magnetic data calls for a complete understanding of the microscopic parameters driving MChD with an easy-accessible and nondamaging light source, such as visible light. For this purpose, here we report on MChD detected with visible light on a chiral magnetic helix formulated as [Mn~Ⅲ(cyclam)(SO_4)]ClC_4H_2O (cyclam = 1,4,8,11-tetraazacyclotetradecane) featuring antiferromagnetically coupled anisotropic Mn~Ⅲ ions. Alternate current susceptibility measurements revealed the existence of a single-chain magnet behavior hidden below the canted antiferromagnetism (T_N = 5.8 K) already evidenced by direct current magnetometry. A detailed analysis of the optical absorption gives access to the value of the zero-field splitting parameter D (2.9 cm~(-1)), which quantifies the magnetic anisotropy of the Mn~Ⅲ centers. Below the magnetic ordering temperature of the material, the MChD spectra exhibit intense absolute configuration dependent MChD signals reaching record values of ca. 12% of the absorbed intensity for the two electronic transitions most influenced by the spin-orbit coupling of the Mn~Ⅲ ion. These findings set a clear route toward the design and preparation of highly MChD-responsive molecular materials.
机译:磁影二色(MCHD)是在手性磁化系统中可以观察到的光质物质相互作用的非偏差表现。它具有根据磁场和光波凹导的相对取向以及系统的绝对配置来具有不偏振光的差动吸收。这种磁力读数对磁数据的光学读数的相关性,以完全了解驱动MCHD的微观参数,易于接近的光源,例如可见光。为此目的,在这里,我们报告用作[Mn〜Ⅲ(SO_4)] CLC_4H_2O(CyclaM = 1,4,8,11-四氮杂环烷的手性磁性螺旋上的可见光检测到MCHD,其具有反铁磁体耦合的各向异性MN 〜Ⅲ离子。替代电流易感性测量揭示了隐藏在倾斜反铁磁体(T_N = 5.8K)下方的单链磁体行为的存在已经通过直流电流磁度测量。对光学吸收的详细分析可以访问零场分裂参数D(2.9cm〜(-1))的值,这量化了Mn〜Ⅲ中心的磁各向异性。低于材料的磁化温度,MCHD光谱表现出强烈的绝对配置相关的MCHD信号达到CA的记录值。用于两个电子转换的吸收强度的12%受Mn〜Ⅲ离子的旋转轨道耦合影响最大的影响。这些发现设定了朝着设计和制备高度MCHD响应性分子材料的清晰路线。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第32期|13908-13916|共9页
  • 作者单位

    Laboratoire National des Champs Magnetiques Intenses (LNCMI) Univ. Grenoble Alpes INSA Toulouse Univ. Toulouse Paul Sabatier EMFL CNRS F-38043 Grenoble France;

    Dipartimento di Chimica 'Ugo Schiff' e INSTM Universita degli Studi di Firenze I-50019 Sesto Fiorentino (Firenze) Italy;

    Laboratoire National des Champs Magnetiques Intenses (LNCMI) Univ. Grenoble Alpes INSA Toulouse Univ. Toulouse Paul Sabatier EMFL CNRS F-38043 Grenoble France;

    Laboratoire National des Champs Magnetiques Intenses (LNCMI) Univ. Grenoble Alpes INSA Toulouse Univ. Toulouse Paul Sabatier EMFL CNRS F-38043 Grenoble France;

    Dipartimento di Ingegneria Industriale - DIEF e INSTM Universita degli Studi di Firenze I-50139 Firenze Italy;

    Laboratoire National des Champs Magnetiques Intenses (LNCMI) Univ. Grenoble Alpes INSA Toulouse Univ. Toulouse Paul Sabatier EMFL CNRS F-38043 Grenoble France;

    Dipartimento di Chimica 'Ugo Schiff' e INSTM Universita degli Studi di Firenze I-50019 Sesto Fiorentino (Firenze) Italy;

    Laboratoire National des Champs Magnetiques Intenses (LNCMI) Univ. Grenoble Alpes INSA Toulouse Univ. Toulouse Paul Sabatier EMFL CNRS F-38043 Grenoble France;

  • 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);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 22:16:49

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