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国家教育部博士点基金(20123127110004)

作品数:2 被引量:7H指数:2
相关作者:万颖钱旭芳赵卿飞于超朱小娟更多>>
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发文基金:国家教育部博士点基金国家自然科学基金国家重点基础研究发展计划更多>>
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可重复使用的有序介孔碳-氧化钛吸附-光催化剂用于去除水中苯酚(英文)被引量:4
2013年
制备了有序介孔碳-氧化钛吸附-光催化剂,利用可见光高效降解水中苯酚.为去除水中高浓度苯酚,设计了吸附-光催化循环,即暗条件吸附8h,分离催化剂和将固体催化剂置于可见光下辐照8h.经过10次循环,水中高浓度苯酚(200mg/L)几乎可被完全降解.详细讨论了TiO2晶格中非金属掺杂、介孔碳壁对TiO2纳米颗粒聚集的阻抑作用、介孔孔道吸附苯酚性能等因素对吸附-光催化剂性能的影响.有序介孔碳-氧化钛复合体有效地结合了物理吸附和光化学降解技术,有望用于降解水中难生物降解的高浓度有机污染物.
位威于超赵卿飞钱旭芳万颖
关键词:苯酚可见光碳掺杂
有序杂化介孔聚合物和碳催化材料合成规律的探索
杂化介孔聚合物和碳材料由于同时具有介孔材料的均匀介观孔道和杂化成分产生的特殊功能引起了人们的极大关注。在合成中,关键是有机前驱体、功能化单体和模板剂的选择。为此,我们设计了三条路线,在自组装合成的不同步骤中引入功能化前驱...
万颖朱小娟
关键词:介孔功能化
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Size-control growth of thermally stable Au nanoparticles encapsulated within ordered mesoporous carbon framework被引量:3
2016年
Simultaneously controlling the size of Au nanoparticles and immobilizing their location to specific active sites while hindering migration and sintering at elevated temperatures is a current challenge within materials chemistry.Typical methods require the use of protecting agents to control the properties of Au nanoparticles and therefore it is difficult to decouple the influence of the protecting agent and the support material.By functionalizing the internal surface area of mesoporous carbon supports with thiol groups and implementing a simple acid extraction step,we are able to design the resulting materials with precise control over the Au nanoparticle size without the need for the presence of any protecting group,whilst simultaneously confining the nanoparticles to within the internal porous network.Monodispersed Au nanoparticles in the absence of protecting agents were encapsulated into ordered mesoporous carbon at various loading levels via a coordination-assisted self-assembly approach.The X-ray diffractograms and transmission electron microscopy micrographs show that the particles have controlled and well-defined diameters between 3 and 18 nm at concentrations between 1.1 and 9.0 wt%.The Au nanoparticles are intercalated into the pore matrix to different degrees depending on the synthesis conditions and are stable after high temperature treatment at 600 °C.N2 adsorption-desorption isotherms show that the Au functionalized mesoporous carbon catalysts possess high surface areas(1269–1743 m^2/g),large pore volumes(0.78–1.38 cm^3/g)and interpenetrated,uniform bimodal mesopores with the primary larger mesopore lying in the range of 3.4–5.7 nm and the smaller secondary mesopore having a diameter close to 2 nm.X-ray absorption near extended spectroscopy analysis reveals changes to the electronic properties of the Au nanoparticles as a function of reduced particle size.The predominant factors that significantly determine the end Au nanoparticle size is both the thiol group concentration and subject
王帅王杰朱小娟王建强Osamu Terasaki万颖
关键词:MESOPOROUS
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