English
首页 > 科学研究 > 科研动态 > 正文

科研进展:Photochemical route for synthesizing atomically dispersed palladium catalysts

发布日期:2016年05月13日   浏览次数:

我室郑南峰教授和傅钢副教授在Science上发表了题为'Nanostructure-based plasmon-enhanced Raman spectroscopy for surface analysis of materials'的研究论文。
相关链接:
http://science.sciencemag.org/content/352/6287/797.full

Abstract

Atomically dispersed noble metal catalysts often exhibit high catalytic performances, but the metal loading density must be kept low (usually below 0.5%) to avoid the formation of metal nanoparticles through sintering. We report a photochemical strategy to fabricate a stable atomically dispersed palladium–titanium oxide catalyst (Pd1/TiO2) on ethylene glycolate (EG)–stabilized ultrathin TiO2 nanosheets containing Pd up to 1.5%. The Pd1/TiO2 catalyst exhibited high catalytic activity in hydrogenation of C=C bonds, exceeding that of surface Pd atoms on commercial Pd catalysts by a factor of 9. No decay in the activity was observed for 20 cycles. More important, the Pd1/TiO2-EG system could activate H2 in a heterolytic pathway, leading to a catalytic enhancement in hydrogenation of aldehydes by a factor of more than 55.