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国家重点基础研究发展计划(2011CBA00503)

作品数:6 被引量:18H指数:2
相关作者:包信和傅强徐红更多>>
相关机构:中国科学院中国科学院大学更多>>
发文基金:国家重点基础研究发展计划国家自然科学基金更多>>
相关领域:理学化学工程一般工业技术更多>>

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6 条 记 录,以下是 1-7
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MoO_x促进的Pt基催化剂用于低温水汽变换反应(英文)
2015年
通过浸渍还原法制备了不同比例的Pt-Mo/SiO_2催化剂,采用X射线衍射、透射电镜、X射线近边吸收谱和X射线光电子能谱表征了Pt-Mo/SiO_2催化剂的组成、结构及价态.研究结果表明,少量MoO_x修饰Pt-Mo/SiO_2催化剂在低温水汽变换反应中表现出比Pt/SiO_2催化剂更高的催化活性,过量MoO_x包覆的Pt-Mo/SiO_2催化剂活性较低.低温水汽变换反应活性来自于Pt与表面MoO_x的界面协同作用,限域在Pt纳米颗粒表面的MoO_x表现出较低价态,高分散MoO_x纳米岛修饰的Pt纳米颗粒是低温水汽变换反应的活性结构.
许学俊傅强包信和
关键词:
氧化石墨烯的控制合成及其CoO复合物作为高效氧气还原催化剂的应用(英文)被引量:2
2015年
本文采用液相化学法对氧化石墨烯氧化官能团的分布进行控制合成,使较多含氧官能团在氧化石墨烯的边缘区域.X射线光电子能谱显示其具有高的含氧官能度,且C=O/C–O比值在2左右,远高于原有Hummers方法制备的氧化石墨烯的0.17.其深黑色的外观与其他文献对比,可以证明其主要的含氧官能团为羧基且羰基主要存在于边缘区域.具有该结构的氧化石墨烯可以经过简单还原后,极大地恢复其高导电性,层面上存有的少量官能团可以用来有效地抓住催化剂颗粒,使得由这种氧化石墨烯所制得的Co O复合物具有非常优秀的催化氧气还原反应性能.
张国新许雨齐王琳王金迪邝允孙晓明
关键词:氧化石墨烯COO催化剂GOPT复合物
Selectivity modulation in the consecutive hydrogenation of benzaldehyde via functionalization of carbon nanotubes被引量:2
2012年
Hydrogenation of benzaldehyde is a typical consecutive reaction,since the intermediate benzyl alcohol is apt to be further hydrogenated.Here we demonstrate that the selectivity of benzyl alcohol can be tuned via functionalization of carbon nanotubes(CNTs),which are used as the support of Pd.With the original CNTs,the selectivity of benzyl alcohol is 88% at a 100% conversion of benzaldehyde.With introduction of oxygen-containing groups onto CNTs,it drops to 27%.In contrast,doping CNTs with N atoms,the selectivity reaches 96% under the same reaction conditions.The kinetic study shows that hydrogenation of benzyl alcohol is significantly suppressed,which can be attributed to weakened adsorption of benzyl alcohol.This is most likely related to the modified electronic structure of Pd species via interaction with functionalized CNTs,as shown by XPS characterization.
Yonghua ZhouJing LiuXingyun LiXiulian PanXinhe Bao
关键词:苯甲醇
SiC催化特性
<正>多孔碳材料在化工中广泛应用,石墨烯、碳纳米管等新兴材料由于其独特的结构及电子特性在催化领域也引起了众多关注[1],并在一系列催化反应中显示出优异的催化性能。但碳材料在实际应用中面临着诸多问题,包括难成型、机械强度差...
潘秀莲李星运马昊包信和
关键词:碳化硅
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A comparative study in structure and reactivity of “FeO_x-on-Pt” and “NiO_x-on-Pt” catalysts
2015年
Oxide nanostructures grown on noble metal surfaces are often highly active in many reactions,in which the oxide/metal interfaces play an important role.In the present work,we studied the surface structures of Fe Ox-on-Pt and Ni Ox-on-Pt catalysts and their activity to CO oxidation reactions using both model catalysts and supported nanocatalysts.Although the active Fe O1x structure is stabilized on the Pt surface in a reductive reaction atmosphere,it is prone to change to an Fe O2x structure in oxidative reaction gases and becomes deactivated.In contrast,a Ni O1x surface structure supported on Pt is stable in both reductive and oxidative CO oxidation atmospheres.Consequently,CO oxidation over the Ni O1x-on-Pt catalyst is further enhanced in the CO oxidation atmosphere with an excess of O2.The present results demonstrate that the stability of the active oxide surface phases depends on the stabilization effect of the substrate surface and is also related to whether the oxide exhibits a variable oxidation state.
Rentao MuQiang FuXiaoguang GuoXuejun XuDali TanXinhe Bao
关键词:CO氧化
Nitrogen doped carbon catalyzing acetylene conversion to vinyl chloride被引量:11
2014年
Commercial production of vinyl chloride from acetylene relies on the use of HgCl2as the catalyst, which has caused severe environmental problem and threats to human health because of its toxicity. Therefore, it is vital to explore alternative catalysts without mercury. We report here that N-doped carbon can catalyze directly transformation of acetylene to vinyl chloride. Particularly, N-doped high surface area mesoporous carbon exhibits a rather high activity with the acetylene conversion reaching 77% and vinyl chloride selectivity above 98% at a space velocity of 1.0 mL min-1 g-1and 200 ℃. It delivers a stable performance within a test period of 100 h and no obvious deactivation is observed,demonstrating potentials to substitute the notoriously toxic mercuric chloride catalyst.
Xingyun LiXiulian PanXinhe Bao
关键词:汞催化剂氯乙烯乙炔
Pt-表层限域的表面FeO_x结构用于低温CO氧化反应(英文)被引量:3
2013年
通过简单的浸渍-还原并随后在酸性溶液中处理制备了Pt-Cu双金属催化剂.利用电感耦合等离子体发射光谱、X射线衍射和X射线光电子能谱对不同处理条件下的Pt-Cu纳米粒子的结构和组成进行了表征.研究发现,Pt-Cu催化剂在高温H2中还原形成了PtCu3合金结构,酸洗处理后形成了包含Pt-骨架(Pt-skeleton)的表面结构和PtCu3合金核的纳米粒子.而Pt-骨架结构又可通过在H2中退火转变为规整的Pt-表层(Pt-skin)结构.Pt-表层表面修饰Fe氧化物后在CO选择氧化反应中表现出较好的催化性能.通过此方法制备的三金属Pt-Cu-Fe催化剂可达到与Pt-Fe相近的高活性,并且催化剂中Pt的用量大大降低.
徐红傅强包信和
关键词:一氧化碳氧化铁氧化物
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