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The effect of hydrogen evolution reaction on conductance quantization of Au, Ag, Cu nanocontacts

机译:析氢反应对Au,Ag,Cu纳米接触电导定量的影响

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摘要

We have mechanically fabricated Au, Ag, and Cu nanocontacts in solution under electrochemical potential control. At the hydrogen evolution potential, fractional conductance peaks appeared near 0.5 G(0) (G(0) = 2e(2)/h) in the conductance histogram of Au and Cu. This fractional conductance peak was not observed in the conductance histogram of Ag. In the case of Au nanocontacts in 50 mM H2SO4 solution, a 0.1 G(0) peak appeared in the conductance histogram, as well as the 0.5 G(0) peak. The origin of the fractional conductance peak and its metal dependence are discussed based on previously reported values of metal - hydrogen binding energy, which was estimated by the exchange current density for the hydrogen evolution reaction.
机译:我们已经在电化学势能控制下在溶液中机械制造了Au,Ag和Cu纳米触点。在氢放出电势下,在Au和Cu的电导直方图中,分数电导峰出现在0.5 G(0)(G(0)= 2e(2)/ h)附近。在Ag的电导直方图中未观察到该分数电导峰。在50 mM H2SO4溶液中的Au纳米接触的情况下,电导直方图中出现了0.1 G(0)峰,还有0.5 G(0)峰。基于先前报道的金属-氢结合能的值,讨论了分数电导峰的起源及其对金属的依赖性,该值通过氢析出反应的交换电流密度来估算。

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