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Separation-Controlled Redox Reactions

机译:分离控制的氧化还原反应

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摘要

In the era of molecular devices and nanotechnology, precise control over electron-transfer processes is strongly desired. However, redox reactions are usually characterized by reaction equilibrium constants strongly departing from unity. This leads to strong favoring of either reactants or products and does not permit subtle control of transferred charge (doping). Here we propose, based on theoretical studies for periodic systems, how charge transfer between reactants could be finely manipulated in the epitaxially grown system composed of extremely strong oxidizer, reducing agent, and an inert separator-the key factor of control.
机译:在分子器件和纳米技术的时代,人们迫切需要对电子转移过程进行精确控制。然而,氧化还原反应的特点通常是反应平衡常数强烈偏离单位。这导致对反应物或产物的强烈偏好,并且不允许对转移电荷(掺杂)进行微妙的控制。在这里,我们基于对周期系统的理论研究,提出了在由极强的氧化剂、还原剂和惰性分离器组成的外延生长系统中,如何精细地控制反应物之间的电荷转移——这是控制的关键因素。

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