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首页> 外文期刊>Angewandte Chemie >Thinner, Smaller, Faster: IR Techniques To Probe the Functionality of Biological and Biomimetic Systems
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Thinner, Smaller, Faster: IR Techniques To Probe the Functionality of Biological and Biomimetic Systems

机译:更薄,更小,更快:用于探测生物仿生系统功能的红外技术

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摘要

New techniques in vibrational spectroscopy are promising for the study of biological samples as they provide exquisite spatial and/or temporal resolution with the benefit of minimal perturbation of the system during observation. In this Minireview we showcase the power of modern infrared techniques when applied to biological and biomimetic systems. Examples will be presented on how conformational changes in peptides can be traced with femtosecond resolution and nanometer sensitivity by 2D IR spectroscopy, and how surface-enhanced infrared difference absorption spectroscopy can be used to monitor the effect of the membrane potential on a single proton-transfer step in an integral membrane protein. Vibrational spectra of monolayers of molecules at basically any interface can be recorded with sum-frequency generation, which is strictly surface-sensitive. Chemical images are recorded by applying scanning near-field infrared microscopy at lateral resolutions better than 50 nm.
机译:振动光谱学中的新技术有望用于生物样品的研究,因为它们提供了精巧的空间和/或时间分辨率,并且在观察过程中对系统的干扰最小。在此Minireview中,我们展示了应用于生物和仿生系统的现代红外技术的强大功能。将提供有关如何通过2D IR光谱以飞秒分辨率和纳米灵敏度追踪肽的构象变化的实例,以及如何使用表面增强的红外差吸收光谱法监测膜电势对单个质子转移的影响的示例进入完整的膜蛋白。基本上在任何界面上的分子单分子层的振动光谱都可以通过求和频率生成来记录,这是严格表面敏感的。通过使用扫描近场红外显微镜以优于50 nm的横向分辨率记录化学图像。

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