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Effect of Protective Agents upon the Catalytic Property of Platinum Nanocrystals

机译:保护剂对铂纳米晶体催化性能的影响

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摘要

"Unprotected" Pt nanocrystals were modified with triphenylphosphine (PPh3), octadecylamine (ODA), poly(vinylpyrrolidone) (PVP), poly(vinyl alcohol) (PVA), and dodecanethiol (DT) to investigate the effect of protective agents on the intrinsic catalytic property of Pt nanocrystals. By evaluating the catalytic performance of these model catalysts for the hydrogenation of para-chloronitrobenzene (p-CNB), it was found that direct or indirect interaction between nanocrystals and protective agents imposed a great impact on the catalytic performance of the nanocrystals. Protective agents with different electron-donating ability (PPh3, ODA, PVP, and PVA) directly altered surface electronic state of Pt nanocrystals to bring the surface Pt atoms into an electron-rich state, which would exert influence on the hydrogenation course by changing the adsorption and the reactivity of reactant, intermediates, and products. In contrast, DT exerted an indirect influence on the Pt nanocrystals. The coordinated Pt atoms were oxidized by DT to generate cationic Pt species on the surface of nanocrystals, and the cationic species would simultaneously improve the hydrogenation rate and selectivity to para-chloroaniline by polarizing the N=O bond in the -NO2 group of p-CNB and altering the electronic state of Pt nanocrystals, respectively. This work provided further insights into nanocatalysis, which is helpful for further design and application of highly efficient nanocrystal catalysts.
机译:用三苯基膦(PPH3),十八烷基胺(ODA),聚(乙烯基吡咯烷酮)(PVP),聚(乙烯醇)(PVA),和十二烷硫醇(DT)用三月酰胺(ODA),和十二烷硫醇(DT)进行修饰,以研究保护剂对本质上的影响Pt纳米晶体的催化性能。通过评估这些模型催化剂的催化性能,用于对氯硝苯苯乙烯的氢化(P-CNB)进行氢化,发现纳米晶体和保护剂之间的直接或间接相互作用对纳米晶体的催化性能产生了重大影响。具有不同电子捐赠能力的保护剂(PPH3,ODA,PVP和PVA)直接改变PT纳米晶体的表面电子状态,使表面Pt原子进入富含电子的状态,这将通过改变氢化路线对氢化路线产生影响反应物,中间体和产品的吸附和反应性。相反,DT对Pt纳米晶体进行间接影响。通过DT氧化配位的Pt原子在纳米晶体的表面上产生阳离子Pt物质,并且通过在-NO2基团中的N = O键在-NO2基团中偏振,阳离子物质同时提高氢化速率和对氯苯胺的选择性。 CNB分别改变Pt纳米晶体的电子状态。这项工作提供了进一步的见解纳米催化,这有助于进一步设计和应用高效的纳米晶催化剂。

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