论文标题

氧化还原单层的电化学射击

Electrochemical Shot-Noise of a Redox Monolayer

论文作者

Grall, Simon, Li, Shuo, Jalabert, Laurent, Kim, Soo-Hyeon, Chovin, Arnaud, Demaille, Christophe, Clement, Nicolas

论文摘要

氧化还原单层是多种设备的基础,包括高频分子二极管或生物分子传感器。我们介绍了一种形式主义,以描述这种单层的电化学射击,并在液体中的室温下实验证实。提出的方法以平衡进行,避免寄生能力,提高灵敏度并允许获得定量信息,例如电子耦合(或标准电子传递速率),其分散体和分子数量。与固态物理学不同,单层能量水平和转移速率的同质性产生了洛伦兹的光谱。在分子电化学系统中进行射击研究的第一步开辟了在室温下在液体环境中进行量子传输研究的观点,以及对生物电化学传感器的高度敏感测量。

Redox monolayers are the base for a wide variety of devices including high-frequency molecular diodes or biomolecular sensors. We introduce a formalism to describe the electrochemical shot-noise of such monolayer, confirmed experimentally at room temperature in liquid. The proposed method, carried out at equilibrium, avoids parasitic capacitance, increases the sensitivity and allows to obtain quantitative information such as the electronic coupling (or standard electron transfer rates), its dispersion and the number of molecules. Unlike in solid-state physics, the homogeneity in energy levels and transfer rates in the monolayer yields a Lorentzian spectrum. This first step for shot-noise studies in molecular electrochemical systems opens perspectives for quantum transport studies in liquid environment at room temperature as well as highly sensitive measurements for bioelectrochemical sensors.

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