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Adsorption of Bi-III on Pt nanoparticles leading to the enhanced electrocatalysis of glucose oxidation

机译:Bi-III在Pt纳米颗粒上的吸附导致增强的葡萄糖氧化电催化作用

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摘要

The nanocomposites of Bi-III/Pt nanoparticles (PtNPs) were prepared using an operationally simple method, in which Bi-III spontaneously adsorbed onto the surface of PtNPs to form a submonolayer by the strong interactions between Bi-III and Pt. The adsorption of Bi-III on PtNPs was confirmed by electrochemical studies. Without PtNPs, Bi-III did not adsorb directly on the surface of glassy carbon electrode. The specific chemistry resulted in high electrocatalysis performance of the obtained nanocomposites toward glucose oxidation compared with PtNPs alone because of the dual effects of Bi(III). On the one hand, Bi tends to bind OH- from alkaline solution and then to share it with the adjacent Pt atom. This binding leads to an increase in number of hydroxylated Pt centers, which are the active species for the electrochemical oxidation of glucose. On the other hand, Bi acts as a binder to cross-link PtNPs and to immobilize them on the surface of glassy carbon electrode. The fabricated Bi-III/PtNP nanocomposites may have the potential applications in the areas of electrocatalysis or electroanalysis.
机译:使用操作简单的方法制备Bi-III / Pt纳米颗粒(PtNPs)的纳米复合材料,其中Bi-III通过Bi-III和Pt之间的强相互作用自发吸附在PtNPs的表面上形成亚单层。电化学研究证实了Bi-III在PtNPs上的吸附。没有PtNP,Bi-III不会直接吸附在玻璃碳电极的表面上。由于Bi(III)的双重作用,与单独的PtNPs相比,特定的化学方法导致获得的纳米复合材料对葡萄糖氧化具有较高的电催化性能。一方面,Bi倾向于与碱性溶液中的OH-结合,然后与相邻的Pt原子共享。这种结合导致羟基化的Pt中心的数量增加,羟基化的Pt中心是葡萄糖的电化学氧化的活性物质。另一方面,Bi充当粘合剂以交联PtNP,并将其固定在玻璃碳电极的表面。制备的Bi-III / PtNP纳米复合材料可能在电催化或电分析领域具有潜在的应用。

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