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Monitoring the Electrochemistry of Single Molecules by Surface-Enhanced Raman Spectroscopy

机译:通过表面增强拉曼光谱监测单分子的电化学

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摘要

Coherent control of chemical species in complex systems is always subject to intrinsic inhomogeneities from the environment. For example, slight chemical modifications can decisively affect transport properties of molecules on surfaces. Hence, single-molecule (SM) studies are the best solution to avoid these problems and to study diverse phenomena in biology, physics, and chemistry. Along these lines, monitoring SM redox processes has always been a “holy grail” in electrochemistry. To date, claims of SM electrochemistry by spectroscopy have come only from fluorescence quenching of polymers and redox-fluorescent molecules. In unconnected developments, the potential of the bianalyte surface-enhanced Raman scattering (SERS) method as a technique with SM sensitivity has been demonstrated. Raman spectroscopy has the potential to explore SM detection of any molecule, independent of its chemical nature. We provide definitive proof of SM events following redox cycles using SERS. The superior sensitivity and spectral richness of SERS makes it general enough to study, in principle, SM electron transfer of any (label-free) molecule.
机译:复杂系统中化学物种的相干控制始终会受到环境固有的不均匀性的影响。例如,轻微的化学修饰可以决定性地影响分子在表面上的传输性质。因此,单分子(SM)研究是避免这些问题并研究生物学,物理学和化学中各种现象的最佳解决方案。沿着这些思路,监测SM氧化还原过程一直是电化学领域的“圣杯”。迄今为止,通过光谱学对SM电化学的主张仅来自聚合物和氧化还原荧光分子的荧光猝灭。在未关联的开发中,已经证明了双分析物表面增强拉曼散射(SERS)方法作为具有SM灵敏度的技术的潜力。拉曼光谱法有可能探索任何分子的SM检测,而与其化学性质无关。我们提供使用SERS进行氧化还原循环后SM事件的确定证据。 SERS的出色灵敏度和光谱丰富性使其在理论上足以研究任何(无标记)分子的SM电子转移。

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  • 来源
    《American Chemical Society》 |2010年第51期|p.18034-18037|共4页
  • 作者单位

    Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas (INIFTA), Universidad Nacional de La Plata-CONICET, Sucursal 4 Casilla de Correo 16 (1900), La Plata, Argentina, The MacDiarmid Institute for Advanced Materials and Nanotechnology, School of Chemical and Physical Sciences, Victoria University of Wellington, P.O. Box 600, Wellington, New Zealand, and Centro Atómico Bariloche and Instituto Balseiro, Comisión Nacional de Energía Atómica and Universidad Nacional de Cuyo, (8400) San Carlos de Bariloche, Río Negro, Argentina;

  • 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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