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首页> 外文期刊>Electrochimica Acta >Surface modification and electrocatalytic properties of Pt(100), Pt(110), Pt(320) and Pt(331) electrodes with Sb towards HCOOH oxidation
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Surface modification and electrocatalytic properties of Pt(100), Pt(110), Pt(320) and Pt(331) electrodes with Sb towards HCOOH oxidation

机译:含Sb的Pt(100),Pt(110),Pt(320)和Pt(331)电极的表面改性和对HCOOH氧化的电催化性能

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摘要

Behaviors of irreversibly adsorbed Sb adatoms on Pt(100), Pt(110), Pt(320) and Pt(331) single crystal surfaces and electrocatalytic properties of the modified electrodes towards formic acid oxidation were investigated. It was determined that Sb adatoms are stable at potentials below 0.45 V (SCE) on Pt(100) and Pt(110), below 0.40 V on Pt(320), and below 0.35 V on Pt(331). Different coverage of Sb{sub}(ad) was obtained conveniently by partially stripping Sb{sub}(ad) from saturation coverage of Sb{sub}(ad). It has demonstrated that the redox behaviors of Sb adatoms and the coadsorption properties of Sb{sub}(ad) with Had depend strongly on the orientations of the Pt single crystal electrode. Significant catalytic effects towards HCOOH oxidation were observed on Pt single crystal electrodes modified with Sb adatoms, which consist of (1) the inhibition of dissociative adsorption of HCOOH, (2) the enhancement of oxidation current, and (3) the negative shift of oxidation potential that was measured about 220 mV on Pt(110)/Sb, 110 mV on (110) sites of Pt(320)/Sb, and 100 mV on Pt(331)/Sb electrode. Neither enhancement of oxidation current nor negative shift of oxidation potential can be observed on Pt(100)/Sb electrode. The results suggested that electronic effect is the main effect presented on Pt(110), Pt(320) and Pt(331) surface upon Sb modification, while geometric effect is considered to the major effect on Pt(100) electrode.
机译:研究了不可逆吸附的Sb原子在Pt(100),Pt(110),Pt(320)和Pt(331)单晶表面上的行为以及修饰电极对甲酸氧化的电催化性能。已确定Sb原子在Pt(100)和Pt(110)上的电位低于0.45 V(SCE),Pt(320)上的电位低于0.40 V,Pt(331)的电位低于0.35 V时稳定。通过从Sb {sub}(ad)的饱和覆盖范围中部分剥离Sb {sub}(ad),可以方便地获得Sb {sub}(ad)的不同覆盖范围。已经证明,Sb原子的氧化还原行为以及Sb {sub}(ad)与Had的共吸附性能在很大程度上取决于Pt单晶电极的取向。在Sb原子修饰的Pt单晶电极上观察到了对HCOOH氧化的显着催化作用,包括(1)抑制HCOOH的解离吸附,(2)氧化电流的增加,和(3)氧化的负移在Pt(110)/ Sb上测得的电势约为220 mV,在Pt(320)/ Sb的(110)位上测得的电势为110 mV,在Pt(331)/ Sb电极上测得的电势为100 mV。在Pt(100)/ Sb电极上既没有观察到氧化电流的增加,也没有观察到氧化电位的负迁移。结果表明,电子效应是修饰Sb时在Pt(110),Pt(320)和Pt(331)表面上呈现的主要效应,而几何效应被认为是对Pt(100)电极的主要效应。

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