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首页> 外文期刊>Science in China. Series B, Chemistry >Surface effects of monolayer-protected gold nanoparticles on the redox reactions between ferricyanide and thiosulfate
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Surface effects of monolayer-protected gold nanoparticles on the redox reactions between ferricyanide and thiosulfate

机译:单层保护的金纳米颗粒对铁氰化物与硫代硫酸盐之间氧化还原反应的表面影响

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摘要

Electron transfer through the self-assembled monolayers (SAMs) on gold nanoparticles is investigated by using the monolayer protected gold nanoclusters (MPCs) as electron-transfer mediators. 3-Mercaptopropionic acid (MPA) and 11-meraptoundecanoic acid (MUA) MPCs were employed to catalyze the redox reaction between potassium ferricyanide and sodium thiosulfate. The catalytic mechanism was proposed that the MPCs act as diffusing electron-mediators and electron transfers to and from the MPCs surface. Therefore the electron transfer rate through the capping layers would be proportional to the MPCs catalyzed reaction rate, which was monitored by the UV absorbance of ferricyanide. The calculated apparent rate constant was orders of magnitude smaller than that of the maximum of tunneling current, which was attributed to the splited energy level of the nanoscale particles.
机译:通过使用单层保护的金纳米团簇(MPC)作为电子转移介质,研究了通过金纳米颗粒上自组装单层(SAM)的电子转移。 3-巯基丙酸(MPA)和11-巯基十一酸(MUA)MPC用于催化铁氰化钾和硫代硫酸钠之间的氧化还原反应。提出了催化机理,即MPC充当扩散电子介体,并且电子往返于MPC表面。因此,通过覆盖层的电子转移速率将与MPC催化的反应速率成比例,该反应速率由铁氰化物的UV吸光度监控。计算出的表观速率常数比隧穿电流的最大值小几个数量级,这归因于纳米级粒子的分裂能级。

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