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Taming interfacial electronic properties of platinum nanoparticles on vacancy-abundant boron nitride nanosheets for enhanced catalysis

机译:在富含空位的氮化硼纳米片上驯化铂纳米粒子的界面电子性质以增强催化作用

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摘要

Taming interfacial electronic effects on Pt nanoparticles modulated by their concomitants has emerged as an intriguing approach to optimize Pt catalytic performance. Here, we report Pt nanoparticles assembled on vacancy-abundant hexagonal boron nitride nanosheets and their use as a model catalyst to embrace an interfacial electronic effect on Pt induced by the nanosheets with N-vacancies and B-vacancies for superior CO oxidation catalysis. Experimental results indicate that strong interaction exists between Pt and the vacancies. Bader charge analysis shows that with Pt on B-vacancies, the nanosheets serve as a Lewis acid to accept electrons from Pt, and on the contrary, when Pt sits on N-vacancies, the nanosheets act as a Lewis base for donating electrons to Pt. The overall-electronic effect demonstrates an electron-rich feature of Pt after assembling on hexagonal boron nitride nanosheets. Such an interfacial electronic effect makes Pt favour the adsorption of O2, alleviating CO poisoning and promoting the catalysis.
机译:抑制由其伴随物调节的Pt纳米粒子的界面电子效应已成为一种优化Pt催化性能的有趣方法。在这里,我们报告在空缺丰富的六方氮化硼六方氮化硼纳米片上组装的Pt纳米颗粒及其用作模型催化剂,以包含由具有N空位和B空位的纳米片诱导的Pt的界面电子效应,以实现出色的CO氧化催化作用。实验结果表明,Pt与空位之间存在强相互作用。不良电荷分析表明,在B空位上具有Pt时,纳米片充当路易斯酸来接受来自Pt的电子,相反,当Pt位于N空位上时,纳米片充当将电子捐赠给Pt的路易斯碱。在六方氮化硼纳米片上组装后,整体电子效应证明了Pt的富电子特征。这种界面电子效应使Pt有利于O2的吸附,减轻了CO中毒并促进了催化作用。

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