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氢溢流现象对催化反应性能影响的研究 被引量:1
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作者 谢伟 《石化技术》 CAS 2019年第10期105-106,共2页
本文从氢溢流现象的形成着手,就氢溢流现象对催化反应性能的影响展开研究,分别探研了氢溢流现象对催化反应的活性、选择性以及稳定性的调控情况。
关键词 解离 溢流 多相催化
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溢流氢效应对多相催化反应性能的调控 被引量:1
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作者 刘杰 宋超 《工业催化》 CAS 2018年第4期6-9,共4页
氢溢流现象广泛存在于多相催化反应中,氢活性物种在不同催化组分之间的传递行为实现了反应物在非解离氢活性位上的加氢过程。通过对催化剂的合理构筑,氢溢流现象的产生可以实现对许多重要催化反应活性、选择性和稳定性的调控。综述如何... 氢溢流现象广泛存在于多相催化反应中,氢活性物种在不同催化组分之间的传递行为实现了反应物在非解离氢活性位上的加氢过程。通过对催化剂的合理构筑,氢溢流现象的产生可以实现对许多重要催化反应活性、选择性和稳定性的调控。综述如何围绕氢溢流加氢机制设计新型高效多相加氢催化剂及其在一些重要催化反应中的应用。 展开更多
关键词 催化化学 活性金属 解离 溢流 多相催化反应
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Fabrication of a highly dispersed Pd_(core)@Pt_(shell) electrocatalyst for the oxygen reduction reaction
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作者 曹龙生 蒋尚峰 +4 位作者 张耕 唐雪君 秦晓平 邵志刚 衣宝廉 《Chinese Journal of Catalysis》 CSCD 北大核心 2017年第7期1196-1206,共11页
Core-shell nanostructures have been widely investigated to improve the electrocatalytic perfor-mance of platinum. However, organic precursors, surfactants or high temperature are usually nec-essary during the prepa... Core-shell nanostructures have been widely investigated to improve the electrocatalytic perfor-mance of platinum. However, organic precursors, surfactants or high temperature are usually nec-essary during the preparation procedure. Unfortunately, these requirements limit the application of these methods on a large scale. Herein, a Pdcore@ Pt shell nanostructure was fabricated through the reduction of fcPtCU by dissociated hydrogen at room temperature without the assistance o f either a surfactant or a high-boiling point solvent. The shell thickness of this nanostructure was successfully controlled by varying the amount of fcPtCU; core-shell nanoparticles with a shell thickness of 0.45, 0.75 and 0.90 nm w ere obtained, as determined by TEM. The remarkable crystallinity and epitaxial growth of the Pdcore@ Pt shell nanostructure were revealed by HRTEM and EDS. According to ICP and XPS, surface segregation of Pt was established. The impressive ORR performance was attributed to the weak adsorption strength of the OHads species, which resulted from the electron transfer impact between the Pdcore and Ptshell. The facile and clean preparation method can be used to prepare other core-shell nanostructures under a mild atmosphere. 展开更多
关键词 Pdcore@Pt shell Dissociated hydrogen Oxygen reduction ELECTROCATALYSIS Core shell
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