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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Micelle-Hosted Palladium Nanoparticles Catalyze Citral Molecule Hydrogenation in Supercritical Carbon Dioxide
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Micelle-Hosted Palladium Nanoparticles Catalyze Citral Molecule Hydrogenation in Supercritical Carbon Dioxide

机译:胶束载钯纳米粒子在超临界二氧化碳中催化柠檬酸分子加氢

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A new approach of employing metal particles in micelles for the hydrogenation of organic molecules in the presence of fluorinated surfactant and water in supercritical carbon dioxide has very recently been introduced.This is allegedly to deliver many advantages for carrying out catalysis including the use of supercritical carbon dioxide(scCO_2)as a greener solvent.Following this preliminary account,the present work aims to provide direct visual evidence on the formation of metal microemulsions and to investigate whether metal located in the soft micellar assemblies could affect reaction selectivity.Synthesis of Pd nanoparticles in perfluorohydrocarboxylate anionic micelles in scCO_2 is therefore carried out in a stainless steel batch reactor at 40 deg C and in a 150 bar CO_2/H_2 mixture.Homogeneous dispersion of the microemulsion containing Pd nanoparticles in scCO_2 is observed through a sapphire window reactor at Wo ratios(molar water-to-surfactant ratios)ranging from 2 to 30.It is also evidenced that the use of micelle assemblies as new metal catalyst nanocarriers could indeed exert a great influence on product selectivity.The hydrogenation of a citral molecule that contains three reducible groups(aldehyde,double bonds at the 2,3-position and the 6,7-position)is studied.An unusually high selectivity toward citronellal(a high regioselectivity toward the reduction of the 2,3-unsaturation)is observed in supercritical carbon dioxide.On the other hand,when the catalysis is carried out in the conventional liquid or vapor phase over the same reaction time,total hydrogenation of the two double bonds is achieved.It is thought that the high kinetic reluctance for double bond hydrogenation of the citral molecule at the hydrophobic end(the 6,7-position)is due to the unique micelle environment that is in close proximity to the metal surface in supercritical carbon dioxide that guides a head-on attack of the molecule toward the core metal particle.
机译:最近引入了一种在胶束中利用金属颗粒在氟化表面活性剂和水在超临界二氧化碳中氢化有机分子的新方法,据称这为进行催化提供了许多优势,包括使用超临界碳。二氧化碳(scCO_2)作为一种绿色溶剂。在此初步研究之后,本工作旨在为形成金属微乳液提供直接的直观证据,并研究位于软胶束组件中的金属是否会影响反应选择性。因此,scCO_2中的全氟氢羧酸盐阴离子胶束是在40摄氏度的不锈钢间歇反应器中和在150 bar CO_2 / H_2混合物中进行的。通过蓝宝石窗口反应器以WO比观察到scCO_2中含有Pd纳米颗粒的微乳液的均匀分散(水与表面活性剂的摩尔比)介于2到30之间。还证明使用胶束组装体作为新型金属催化剂纳米载体确实会对产品选择性产生很大影响。柠檬酸分子的氢化反应包含三个可还原基团(醛,2,3-位双键和6研究表明,在超临界二氧化碳中,对香茅醛具有极高的选择性(对2,3-不饱和度的还原具有很高的区域选择性)。或气相在相同的反应时间内,实现了两个双键的完全氢化。人们认为,在疏水端(6,7-位)的柠檬酸分子双键氢化的高动力学磁阻是由于独特的胶束环境,它在超临界二氧化碳中紧邻金属表面,可引导分子朝着核心金属颗粒的正面攻击。

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