首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Electronic coupling between the unoccupied states of the organic and inorganic sublattices of methylammonium lead iodide: A hybrid organic-inorganic perovskite single crystal
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Electronic coupling between the unoccupied states of the organic and inorganic sublattices of methylammonium lead iodide: A hybrid organic-inorganic perovskite single crystal

机译:甲基钼铅的有机和无机子发作的未占用态的电子耦合:杂交有机 - 无机钙钛矿单晶

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Organic-inorganic halide perovskites have been intensively reinvestigated due to their applications, yet the optoelectronic function of the organic cation remains unclear. Through organic-selective resonant Auger electron spectroscopy measurements on well-defined single-crystal surfaces, we find evidence for electronic coupling in the unoccupied states between the organic and inorganic sublattices of the prototypical hybrid perovskite, which is contrary to the notion based on previous studies that the organic cation is electronically inert. The coupling is relevant for electron dynamics in the material and for understanding optoelectronic functionality.
机译:由于其应用,有机 - 无机卤化物钙酸盐已经集中加强,但有机阳离子的光电功能仍然不清楚。 通过有机选择性共振螺旋钻电子光谱测量在明确定义的单晶表面上,我们发现了在原型杂交钙钛矿的有机和无机子系统之间的未占用状态中的电子耦合证据,这与基于以前研究的概念相反 有机阳离子是电子惰性的。 耦合与材料中的电子动力学相关,并且用于理解光电功能。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第4期|L041302.1-L041302.6|共6页
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    Condensed Matter Physics of Energy Materials Division of X-ray Photon Science Department of Physics and Astronomy Uppsala University Box 516 Uppsala 75121 Sweden;

    Department of Physics Stockholm University AlbaNova University Center Stockholm 10691 Sweden;

    Department of Physics Stockholm University AlbaNova University Center Stockholm 10691 Sweden Theory and Simulations Laboratory HRDS Raja Ramanna Centre for Advanced Technology Indore 452013 India;

    Condensed Matter Physics of Energy Materials Division of X-ray Photon Science Department of Physics and Astronomy Uppsala University Box 516 Uppsala 75121 Sweden Swerim AB Kista Stockholm 16407 Sweden;

    Condensed Matter Physics of Energy Materials Division of X-ray Photon Science Department of Physics and Astronomy Uppsala University Box 516 Uppsala 75121 Sweden;

    TIFR Centre for Interdisciplinary Sciences Tata Institute of Fundamental Research 36/P Gopanpally Village Serilingampally Mandal Hyderabad 500046 India;

    Condensed Matter Physics of Energy Materials Division of X-ray Photon Science Department of Physics and Astronomy Uppsala University Box 516 Uppsala 75121 Sweden;

    Institute Methods and Instrumentation for Synchrotron Radiation Research Helmholtz-Zentrum Berlin GmbH Albert-Einstein-Straβe 15 Berlin 12489 Germany;

    Institute Methods and Instrumentation for Synchrotron Radiation Research Helmholtz-Zentrum Berlin GmbH Albert-Einstein-Straβe 15 Berlin 12489 Germany;

    Paul Scherrer Institut WLGA/212 Forschungsstrasse 111 5232 Villigen Switzerland;

    Condensed Matter Physics of Energy Materials Division of X-ray Photon Science Department of Physics and Astronomy Uppsala University Box 516 Uppsala 75121 Sweden;

    TIFR Centre for Interdisciplinary Sciences Tata Institute of Fundamental Research 36/P Gopanpally Village Serilingampally Mandal Hyderabad 500046 India;

    Department of Physics Stockholm University AlbaNova University Center Stockholm 10691 Sweden;

    Condensed Matter Physics of Energy Materials Division of X-ray Photon Science Department of Physics and Astronomy Uppsala University Box 516 Uppsala 75121 Sweden;

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