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Photoelectrochemical NADH regeneration is highly sensitive to the nature of electrode surface

机译:光电化学NADH再生对电极表面的性质非常敏感

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(Photo)electrochemistry enables the synthesis of high-value fine chemicals and highly selective activation of molecules that are difficult to prepare using conventional chemical methods. In this work, light-driven NADH (reduced nicotinamide adenine dinucleotide) regeneration is achieved using a molecular Rh(III) mediator on Si photoelectrodes. This process is observed to be highly sensitive to the surface nature of Si photoelectrodes, exhibiting an overpotential reduction up to 600 mV on Si nanowires (SiNWs) as compared to planar Si. The use of a molecular mediator and SiNWs enables 100% selectivity toward NADH synthesis within a broad potential window. The origin of the striking difference is identified as the multifaceted nature of SiNWs.
机译:(照片)电化学使得能够合成高价值精细化学品,以及使用常规化学方法难以制备的分子的高度选择性活化。 在这项工作中,使用Si光电极上的分子RH(III)介体实现光驱动的NADH(烟酰胺腺嘌呤二核苷酸的减少)再生。 与平面Si相比,观察到该过程对Si光电极的表面性质高度敏感,在Si纳米线(SINW)上表现出高达600mV的过电压降低。 使用分子介体和SINWS在广泛的潜在窗口内使100%的选择性朝着NADH合成选择性。 引人注目差异的起源被识别为SINWS的多方面性质。

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