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国家自然科学基金(ZR2010BQ001)

作品数:2 被引量:4H指数:1
相关作者:彭功名曹泉牟新东关静王喜成更多>>
相关机构:中国科学院更多>>
发文基金:国家自然科学基金更多>>
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基于第一性原理方法研究ReO_x在ReO_x-Rh/ZrO_2和ReO_x-Ir/ZrO_2催化的甘油氢解反应中的作用机制(英文)被引量:3
2013年
采用密度泛函理论研究了ZrO2负载的Ru基、Rh基以及Re改性的Rh基、Ir基催化剂上甘油氢解生成1,2-丙二醇和1,3-丙二醇的热力学过程, 重点考察了ReOx调变催化剂活性和选择性的作用机制. 结果表明, Ru/ZrO2和Rh/ZrO2催化剂上甘油分解经由脱水-加氢反应途径, 1,2-丙二醇的生成是热力学有利过程, 其中Ru基催化剂活性更高. 在Re修饰的Rh基和Ir基催化剂上, 反应遵循直接氢解机理, 其中金属表面解离的氢原子进攻ReOx团簇上与醇盐紧邻的C-O键是催化甘油转化为丙二醇最核心的步骤. Re-Ox-Rh/ZrO2催化剂上1,2-丙二醇为主要产物, 并伴随1,3-丙二醇的生成, ReOx的修饰则显著提高了Ir/ZrO2催化剂上1,3-丙二醇选择性. 与单金属催化剂上发生的间接氢解机理相比, 修饰催化剂上1,3-丙二醇选择性的提高可主要归因于Rh(Ir)-Re协同催化的直接氢解反应过程, 其中羟基化铼官能团有利于末端醇盐中间体的生成. ReOx-Ir/ZrO2催化剂上较大的Ir-Re团簇使得末端金属醇盐的立体优选性比次级醇盐更为突出, 从而具有最高的1,3-丙二醇选择性.
关静陈秀芳彭功名王喜成曹泉兰峥岗牟新东
关键词:金属催化剂
The role of ReOx at ZrO2-supported Re-modified catalysts in glycerol hydrogenolysis:insights from first-principles study
<正>Introduction The general challenge in the hydrogenolysis of glycerol is to control the branching ratio betw...
Jing GuanGongming PengXicheng WangZhenggang LanXindong Mu
关键词:THERMODYNAMICS
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Thermodynamics of glycerol hydrogenolysis to propanediols over supported copper clusters: Insights from first-principles study被引量:1
2013年
Copper catalysts supported on metal oxides display unique efficiency and selectivity in catalyzing glycerol hydrogenolysis to propanediols. Understanding the reaction at the molecular level is the key to rational design of better catalysts for propanediol synthesis, which is one of the major challenges for glycerol application in energy. In this work, extensive calculations based on periodic density functional theory were carried out to study thermodynamics of glycerol hydrogenolysis over binary model catalysts, including Cu/ZrO2 and Cu/MgO, with the focus to elucidate the competitive reaction pathways to produce the 1,2-propanediol (1,2-PDO) and 1,3-propanediol (1,3-PDO). Our results suggest that the reaction starts with glycerol dehydration on the metal oxide, followed by sequential hydrogenation over metal centers. Based on our explorations on the stabilities of adsorbed reactants, dehydrated intermediates and hydrogenated species along the reaction channels, the DFT calculations show that the 1,2-PDO formation will dominate in comparison to the 1,3-PDO from thermodynamic viewpoint. This is consistent with our experiments where the Cu catalysts seem to give the 1,2-PDO as a main product. The calculations and experiments also indicate that the Cu/MgO exhibits superior activities than Cu/ZrO2 for the hydrogenolysis of glycerol molecules.
GUAN JingWANG XiChengWANG XiaoYanMU XinDong
关键词:C-C
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