+Advanced Search
Synthesis of Diphenylmethane using Iron-containing Mesoporous Catalysts Prepared by Sol-gel Method
Author:
Affiliation:

College of Materials Science and Engineering,China Jiliang University,College of Materials Science and Engineering,China Jiliang University,College of Materials Science and Engineering,China Jiliang University,College of Materials Science and Engineering,China Jiliang University,College of Materials Science and Engineering,China Jiliang University,College of Materials Science and Engineering,China Jiliang University,College of Materials Science and Engineering,China Jiliang University,Department of Chemical,Zhejiang University,College of Materials Science and Engineering,China Jiliang University,Department of Chemical,Zhejiang University

  • Article
  • | |
  • Metrics
  • |
  • Reference [31]
  • |
  • Related [20]
  • | | |
  • Comments
    Abstract:

    Using sol-gel method, the iron-containing nanocomposites with the ferric citrate as iron raw were synthesized. The clear sols were gelated at room temperature and then treated at 60 oC in vacuum to get dry gels which were characterized by thermogravimetricSanalysis (TG). Finally, mesoporous Fe2O3/SiO2 nanoparticles were obtained by the calciner at 400 oC for 3h. The structural properties of synthesized particles were investigated by X-ray diffraction (XRD), N2 adsorption-desorptionStechnique, transmission electron microscopy (TEM), Fourier-transform IR spectroscopy (FT-IR), and Temperature programmed reduction (H2-TPR), which revealed that the iron active centers were successfully incorporated into the silica framework with spherical particles size about 50 nm and a average pore diameter of 30-45 ?. The catalytic activity of nanocatalysts had been tested in the synthesis diphenylmethane by Friedel-Crafts alkylation reaction. It found that the catalysts exhibited an excellent activity with 100% conversion of benzyl chloride and relatively higher selectivity to diphenylmethane, and could be reusedSmultiple times.

    Reference
    1Olah G A. Friedel–Crafts Chemistry, Wiley, New York, 1973
    2Ahmed A E, Adam F. Microporous and Mesoporous Materials [J], 2009, 118: 35
    3Candu N, Florea M, Coman S M et al. Applied Catalysis A: General [J],S2011, 393(1): 206
    4Nguyen D C, Nguyen D H, Tran T H et al. Journal of Alloys and Compounds[J], 2014, 582: 83
    5Leng Kunyue, Sun Shengnan, Wang Binteng et al. Catalysis Communications[J],S2012, 28(44): 64
    6Hu X C, Chuah G K, Jaenicke S. Microporous and Mesoporous Materials[J], 2002, 53(1): 153
    7Leng Kunyue, Wang Yi, Hou changmin et al. Journal of Catalysis[J], 2013, 306(3): 100
    8Choudhary V R, Jana S K. Journal of Molecular Catalysis A: Chemical [J], 2002,180(1-2): 267
    9Bachari K, Cherifi O. Journal of Molecular Catalysis A: Chemical[J], 2006, 260(1-2): 19
    10Choudhary V R, Jana S K, Patil N S et al. Microporous and Mesoporous Materials[J], 2003, 57(1): 21
    11Sun Y, Walspurger S, Tessonnier J P et al. Applied Catalysis A: General[J], 2006, 300(1): 1
    12Jin D F, Wu P P, Zhang M et al. Microporous and Mesoporous Materials [J], 2016, 233: 109
    13PREETHI L E M, REVATHI S, SIVAKUMAR T et al. E-Journal of Chemistry [J], 2008, 5(3): 467
    14LIN Tao, ZHANG Xin, LI Rong et al. Chinese Chemical Letters [J], 2011, 22(6): 639
    15Anand C, Priya S V, Lawerence G et al. Catalysis Today [J], 2013, 204(15): 125
    16Kanchamreddy R R, Mutyala S, Kantam L M et al. Indian Journal of Chemistry[J], 2014, 53: 576
    17Srinivasan V V, Imran G, Maheswari R. Materials Chemistry and Physics [J], 2015, 165: 72
    18Samanta S, Giri S, Sastry P U et al. Industrial Engineering Chemistry Research[J], 2003, 42(13): 3012
    19BHAUMIK A, SAMANTA S, MAL N K. Indian Academy of Sciences [J], 2005, 65(5): 855
    20Niznansky D,Rehspringer J L,Drillon M. IEEE TRANSACTIONS ON MAGNETICS[J], 1994, 30(2): 821
    21Chae H S, Kim S S, Piao S H et al. Colloid and Polymer Science [J], 2016, 294(4):647
    22Gu J L, Dong X, Elangovan S P et al. Journal of Solid State Chemistry [J], 2012, 186(2):208
    23Chang C B, Zhang C R, Wang W Y et al. RARE METALS [J], 2010, 29(5):501
    24Zhang X J, Ren W Z, Gui H T et al. Journal Sol-Gel Science and Technology[J], 2011,58(1):232
    25Alagiri M, Hamid S B A. Journal Sol-Gel Science and Technology[J], 2015, 74(3):783
    26Masthoff I C, Kraken M, Menzel D et al. Journal Sol-Gel Science and Technology[J], 2016, 77(3):553
    27Solinas S, Piccaluga G, Morales M P et al. Acta Materialia[J], 2001, 49(14):2805
    28Lu Y, Yin Y D, Mayers B T et al. Nano Letters[J], 2002, 22(3):183
    29Xu X J, Wang J, Yang C Q et al. Journal of Alloys and Compounds[J], 2009, 468(1-2):414
    30Wang C L, Shaw L L. Journal Sol-Gel Science and Technology [J], 2014, 72(3):602
    31Zhai Y P, Dou Y Q, Liu X X et al. Journal of Materials Chemistry[J], 2009, 19(20):3292
    Cited by
    Comments
    Comments
    分享到微博
    Submit
Get Citation

[WU Pan-pan, Wang Qing, Tang Hui-jie, Xu Ling-liang, JIN Hong-xiao, GE Hong-liang, WANG Xin-qing, LOU Hui, JIN Ding-feng, Guo Hui-jun. Synthesis of Diphenylmethane using Iron-containing Mesoporous Catalysts Prepared by Sol-gel Method[J]. Rare Metal Materials and Engineering,2018,47(S2):282~286.]
DOI:[doi]

Copy
Article Metrics
  • Abstract:846
  • PDF: 1033
  • HTML: 127
  • Cited by: 0
History
  • Received:December 01,2017
  • Revised:August 22,2018
  • Adopted:February 01,2018
  • Online: November 01,2018