Citation: Mingming Zhang, Ya Gao, Chuang Li, Changhai Liang. Chemical vapor deposition of Pd(C3H5)(C5H5) for the synthesis of reusable Pd@ZIF-8 catalysts for the Suzuki coupling reaction[J]. Chinese Journal of Catalysis, ;2015, 36(4): 588-594. doi: 10.1016/S1872-2067(14)60292-8 shu

Chemical vapor deposition of Pd(C3H5)(C5H5) for the synthesis of reusable Pd@ZIF-8 catalysts for the Suzuki coupling reaction

  • Corresponding author: Changhai Liang, 
  • Received Date: 10 November 2014
    Available Online: 29 December 2014

    Fund Project: 国家自然科学基金(21073023) (21073023) 中央高校基本科研业务费专项资金(DUT13RC(3)41) (DUT13RC(3)41) 中国博士后科学基金(2013M541220). (2013M541220)

  • A zeolite-imidazolium-framework-supported Pd-based heterogeneous catalyst (Pd@ZIF-8) was prepared by a metal-organic chemical vapor deposition method under mild conditions using Pd(C3H5)(C5H5) as the Pd precursor. N2 adsorption and pore size distribution data showed that ZIF-8 and Pd@ZIF-8 both possessed high surface areas. Transmission electron microscopy images showed that Pd nanoparticles with sizes of about 1.5-3.5 nm were homogeneously dispersed on the ZIF-8 support in Pd@ZIF-8. The Pd@ZIF-8 catalyst showed good activity in Suzuki coupling reactions with several different kinds of aryl halides. It could be reused at least six times without dramatic loss of activity or decomposition of the ZIF-8 structure.
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    1. [1]

      [1] Wang Z Q, Cohen S M. Chem Soc Rev, 2009, 38: 1315

    2. [2]

      [2] Park K S, Ni Z, Cote A P, Choi J Y, Huang R D, Uribe-Romo F J, Chae H K, O'Keeffe M, Yaghi O M. Proc Natl Acad Sci USA, 2006, 103: 10186

    3. [3]

      [3] Phan A, Doonan C J, Uribe-Romo F J, Knobler C B, O'Keeffe M, Yaghi O M. Acc Chem Res, 2010, 43: 58

    4. [4]

      [4] Morris R E, Wheatley P S. Angew Chem Int Ed, 2008, 47: 4966

    5. [5]

      [5] Li K H, Olson D H, Seidel J, Emge T J, Gong H W, Zeng H P, Li J. J Am Chem Soc, 2009, 131: 10368

    6. [6]

      [6] Jiang H L, Liu B, Akita T, Haruta M, Sakurai H, Xu Q. J Am Chem Soc, 2009, 131:11302

    7. [7]

      [7] Tran U P N, Le K K A, Phan N T S. ACS Catal, 2011, 1: 120

    8. [8]

      [8] Yin L, Liebscher J. Chem Rev, 2007, 107: 133

    9. [9]

      [9] Garrett C E, Prasad K. Adv Synth Catal, 2004, 6: 89

    10. [10]

      [10] Welch C J, Albaneze-Walker J, Leonard W R, Biba M, Dasilva J, Henderson D, Laing B, Mathre D J, Spencer S, Bu X, Wang T. Org Process Res Dev, 2005, 9: 198

    11. [11]

      [11] Zhao F, Bhanage B M, Shirai M, Arai M. Chem Eur J, 2000, 6: 843

    12. [12]

      [12] Hagivara H, Shimizu Y, Hoshi T, Suzuki T, Ando M, Okubo K, Yokoyama C. Tetrahedra Lett, 2001, 42: 4349

    13. [13]

      [13] Toebes M L, van Dillen J A, de Jong K P. J Mol Catal A, 2001, 173: 75

    14. [14]

      [14] Mehnert C P, Weaver D W, Ying J Y. J Am Chem Soc, 1998, 120: 12289

    15. [15]

      [15] Djakocitch L, Koehler K. J Am Chem Soc, 2001, 123: 5990

    16. [16]

      [16] Djakocitch L, Koehler K. J Mol Catal A, 1999, 142: 275

    17. [17]

      [17] Biffis A, Zecca M, Basato M. Eur J Inorg Chem, 2011: 1131

    18. [18]

      [18] Wagner M, Köhler K, Djakovitch L, Weinkauf S, Hagen V, Muhler M. Top Catal, 2003, 13: 319

    19. [19]

      [19] Köhler K, Wagner M, Djakovitch L. Catal Today, 2001, 66: 105

    20. [20]

      [20] Li J, Mau A W H, Strauss C R. Chem Commun, 1997: 1275

    21. [21]

      [21] Zhang M M, Jiang M M, Liang C H. Chin J Catal (张明明, 江曼曼, 梁长海. 催化学报), 2013, 34: 2161

    22. [22]

      [22] Zhang M M, Guan J C, Zhang B S, Su D S, William C T, Liang C H. Catal Lett, 2012, 142: 313

    23. [23]

      [23] Chen L, Rangan S, Li J, Jiang H, Li Y. Green Chem, 2014, 16: 3978

    24. [24]

      [24] Fei H, Cohen S M. Chem Commun, 2014, 50: 4810

    25. [25]

      [25] Aijaz A, Xu Q. J Phys Chem Lett, 2014, 5: 1400

    26. [26]

      [26] Dent W T, Long R, Wilkinson A J. J Chem Soc, 1964: 1585

    27. [27]

      [27] Shaw B L. Proc Chem Soc, 1960, 247

    28. [28]

      [28] Pan Y Y, Yuan B Z, Li Y W, He D H. Chem Commun, 2010, 46: 2280

    29. [29]

      [29] El-Shall M S, Abdelsayed V, Khder A E R S, Hassan H M A, El-Kaderi H M, Reich T E. J Mater Chem, 2009, 19: 7625

    30. [30]

      [30] Jiang H L, Akita T, Ishida T, Haruta M, Xu Q. J Am Chem Soc, 2011, 133: 1304

    31. [31]

      [31] Ishida T, Kawakita N, Akita T, Haruta M. Gold Bull, 2009, 42: 267

    32. [32]

      [32] Esken D, Turner S, Lebedev O I, van Tendeloo G, Fischer R A. Chem Mater, 2010, 22: 6393

    33. [33]

      [33] Opelt S, Türk S, Dietzsch E, Henschel A, Kaskel S, Klemm E. Catal Commun, 2008, 9: 1286

    34. [34]

      [34] Sabo M, Henschel A, Fröede H, Klemm E, Kaskel S. J Mater Chem, 2007, 17: 3827

    35. [35]

      [35] Hermes S, Schröder M K, Schmid R, Khodeir L, Muhler M, Tissler A, Fischer R W, Fischer R A. Angew Chem Int Ed, 2005, 44: 6237

    36. [36]

      [36] Schröder F, Esken D, Cokoja M, van den Berg M W E, Lebedev O I, van Tendeloo G, Walaszek B, Buntkowsky G, Limbach H H, Chaudret B, Fischer R A. J Am Chem Soc, 2008, 130: 6119

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