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通常认为丝光沸石是具有一维孔道结构的微孔沸石,在涉及大分子的催化反应中存在较为严重的扩散限制.以双季铵型表面活性剂C18H37N+(CH3)2C6H12N+ (CH3)2C6H13(Br)2(C18-6-6Br2)作为软模板,在水热条件下制备了多级孔丝光沸石分子筛.采用XRD、FT-IR、SEM、TEM、TG-DTG、N2物理吸附、NH3-TPD等手段对样品的晶体结构和物化性能进行了表征.结果表明,加入C18-6-6Br2制备了纳米棒定向排列的多级孔丝光沸石,而且可通过改变合成体系中C18-6-6Br2/SiO2的比值,对样品的晶粒尺寸、介孔表面积和介孔孔容进行系统调变.在苯与苯甲醇的苄基化反应中,多级孔样品比传统微孔丝光沸石表现出更好的苄基化反应催化性能和显著提高的反应速率.多级孔丝光沸石优异的催化性能归因于介孔的存在使其具有更多的可接近活性位和更优异的质量传输性质,这种独特的多级孔丝光沸石在大分子催化转化反应中具有较大的应用潜力.

参考文献

[1] Li-Hua Chen;Xiao-Yun Li;Joanna Claire Rooke.Hierarchically structured zeolites: synthesis, mass transport properties and applications[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,201234(34):17381-17403.
[2] Kyungsu Na;Minkee Choi;Ryong Ryoo.Recent advances in the synthesis of hierarchically nanoporous zeolites[J].Microporous and mesoporous materials: The offical journal of the International Zeolite Association,2013:3-19.
[3] Zhou, J;Hua, ZL;Shi, JL;He, QJ;Guo, LM;Ruan, ML.Synthesis of a Hierarchical Micro/Mesoporous Structure by Steam-Assisted Post-Crystallization[J].Chemistry: A European journal,200947(47):12949-12954.
[4] Marcelo Boveri;Carlos Marquez-Alvarez;Miguel Angel Laborde;Enrique Sastre.Steam and acid dealumination of mordenite Characterization and influence on the catalytic performance in linear alkylbenzene synthesis[J].Catalysis Today,20062/3(2/3):217-225.
[5] Verboekend, D.;Pérez-Ramírez, J..Desilication mechanism revisited: Highly mesoporous all-silica zeolites enabled through pore-directing agents[J].Chemistry: A European journal,20114(4):1137-1147.
[6] Groen JC;Peffer LAA;Moulijn JA;Perez-Ramirez J.Mechanism of hierarchical porosity development in MFI zeolites by desilication: The role of aluminium as a pore-directing agent[J].Chemistry: A European journal,200517(17):4983-4994.
[7] Jacobsen Claus J.H..Mesoporous Zeolite Single Crystals[J].Journal of the American Chemical Society,200029(29):7116-7117.
[8] Baoyu Liu;Yanzhi Tan;Yanqun Ren.Fabrication of a hierarchically structured beta zeolite by a dual-porogenic surfactant[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,201235(35):18631-18638.
[9] Baoyu Liu;Yanqun Ren;Qianqian Duan;Fei Chen;Hongxia Xi;Yu Qjan.Facile synthesis of mesoporous aluminosilicates constructed with crystalline microporous frameworks[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2013Aug.15(Aug.15):55-61.
[10] MINKEE CHOI;HAE SUNG CHO;RAJENDRA SRIVASTAVA.Amphiphilic organosilane-directed synthesis of crystalline zeolite with tunable mesoporosity[J].Nature materials,20069(9):718-723.
[11] Na, K;Choi, M;Park, W;Sakamoto, Y;Terasaki, O;Ryoo, R.Pillared MFI Zeolite Nanosheets of a Single-Unit-Cell Thickness[J].Journal of the American Chemical Society,201012(12):4169-4177.
[12] Wu, L.;Degirmenci, V.;Magusin, P.C.M.M.;Lousberg, N.J.H.G.M.;Hensen, E.J.M..Mesoporous SSZ-13 zeolite prepared by a dual-template method with improved performance in the methanol-to-olefins reaction[J].Journal of Catalysis,2013:27-40.
[13] Wu, L.;Degirmenci, V.;Magusin, P.C.M.M.;Szyja, B.M.;Hensen, E.J.M..Dual template synthesis of a highly mesoporous SSZ-13 zeolite with improved stability in the methanol-to-olefins reaction[J].Chemical communications,201276(76):9492-9494.
[14] Kyungsu Na;Changbum Jo;Jeongnam Kim;Kanghee Cho;Jinhwan Jung;Yongbeom Seo;Robert J. Messinger;Bradley F. Chmelka;Ryong Ryoo.Directing Zeolite Structures into Hierarchically Nanoporous Architectures[J].Science,2011Jul.15 TN.6040(Jul.15 TN.6040):328-332.
[15] Feng-Shou Xiao;Lifeng Wang;Chengyang Yin;Kaifeng Lin;Jixue Li;Ruren Xu;Dang Sheng Su;Robert Schlogl;Toshiyuki Yokoi;Takashi Tatsumi.Catalytic Properties of Hierarchical Mesoporous Zeolites Templated with a Mixture of Small Organic Ammonium Salts and Mesoscale Cationic Polymers[J].Angewandte Chemie,200619(19):3090-3093.
[16] Li, Yuping;Sun, Cuijuan;Fan, Weibin;Wang, Yanyue;Lan, Aidong;Han, Peide;Li, Xiaofeng;Dou, Tao.One-pot synthesis of hierarchical mordenite and its performance in the benzylation of benzene with benzyl alcohol[J].Journal of Materials Science,201514(14):5059-5067.
[17] Johan C.Groen;Tsuneji Sano;Jacob A.Moulijn.Alkaline-mediated mesoporous mordenite zeolites for acid-catalyzed conversions[J].Journal of Catalysis,20071(1):21-27.
[18] Yousheng Tao;Hirofumi Kanoh;Lloyd Abrams;Katsumi Kaneko.Mesopore-Modified Zeolites:Preparation,Characterization,and Applications[J].Chemical Reviews,20063(3):896-910.
[19] Qiao Zhang;Shu-Juan Liu;Shu-Hong Yu.Recent advances in oriented attachment growth and synthesis of functional materials: concept, evidence, mechanism, and future[J].Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology,20092(2):191-207.
[20] Jiao Chen;Weiming Hua;Yu Xiao;Qisheng Huo;Kake Zhu;Xinggui Zhou.Tailoring the Structure of Hierarchically Porous Zeolite Beta through Modified Orientated Attachment Growth in a Dry Gel System[J].Chemistry: A European journal,201445(45):14744-14755.
[21] M. L. Occelli;S. Biz;A. Auroux;G. J. Ray.Effects of the nature of the aluminum source on the acidic properties of some mesostructured materials[J].Microporous and Mesoporous Materials,19981/3(1/3):193-213.
[22] Leng, K.;Wang, Y.;Hou, C.;Lancelot, C.;Lamonier, C.;Rives, A.;Sun, Y..Enhancement of catalytic performance in the benzylation of benzene with benzyl alcohol over hierarchical mordenite[J].Journal of Catalysis,2013:100-108.
[23] 彭鹏;张占全;王有和;Fazle Subhan;阎子峰.多级孔分子筛的制备与催化应用[J].化学进展,2013(12):2028-2037.
[24] Vasant R. Choudhary;Suman K. Jana;Nilesh S. Patil;Suresh K. Bhargava.Friedel-Crafts type benzylation and benzoylation of aromatic compounds over Hbeta zeolite modified by oxides or chlorides of gallium and indium[J].Microporous and Mesoporous Materials,20031(1):21-35.
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