Synthesis of Pure Silica Zeolites

Zhenrui Mi , Tingting Lu , Jia-Nan Zhang , Ruren Xu , Wenfu Yan

Chemical Research in Chinese Universities ›› 2022, Vol. 38 ›› Issue (1) : 9 -17.

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Chemical Research in Chinese Universities ›› 2022, Vol. 38 ›› Issue (1) : 9 -17. DOI: 10.1007/s40242-021-1383-0
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Synthesis of Pure Silica Zeolites

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Abstract

Pure silica zeolite has become an important porous material in the chemical industry due to its excellent stability and hydrophobicity. However, there are still some problems in the synthesis process of pure silica zeolite, such as environmental pollution, complex operation and high cost. How to effectively and environmentally synthesize pure silica zeolite still remains a significant challenge. This review summarizes the pure silica zeolite-type frameworks that have been discovered currently, introduces the progresses achieved in the synthesis of pure silica zeolite and prospects the areas for future exploration in the synthesis and development of pure silica zeolite.

Keywords

Pure silica zeolite / Framework type / Synthetic method

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Zhenrui Mi, Tingting Lu, Jia-Nan Zhang, Ruren Xu, Wenfu Yan. Synthesis of Pure Silica Zeolites. Chemical Research in Chinese Universities, 2022, 38(1): 9-17 DOI:10.1007/s40242-021-1383-0

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References

[1]

Liang J, Liang Z B, Zou R Q, Zhao Y L. Adv. Mater., 2017, 29: 1701139.

[2]

Mofarahi M, Gholipour F. Microporous Mesoporous Mater., 2014, 200: 1.

[3]

Cheung O, Hedin N. RSC Adv., 2014, 4: 14480.

[4]

Hong M, Yu L Y, Wang Y D, Zhang J, Chen Z W, Dong L, Zan Q J, Li R L. Chem. Eng. J., 2019, 359: 363.

[5]

Barrer R M. J. Chem. Soc., 1948 2158.

[6]

Reed T B, Breck D W. J. Am. Chem. Soc., 195, 78: 5972.

[7]

Milton R. M., Molecular Sieve Adsorbents, US2882244, 1959

[8]

Flanigen E M, Bennett J M, Grose R W, Cohen J P, Patton R L, Kirchner R M, Smith J V. Nature, 1978, 271: 512.

[9]

Bibby D M, Milestone N B, Aldridge L P. Nature, 1979, 280: 664.

[10]

Chica A, Sayas S. Catal. Today, 2009, 146: 37.

[11]

Čejka J, Corma A, Zones S. Zeolites and Catalysis: Synthesis, Reactions and Applications, 2010

[12]

Wang Z, Wang H, Mitra A, Huang L, Yan Y. Adv. Mater., 2001, 13: 746.

[13]

Sastre G, Corma A. J. Phys. Chem. B, 200, 110: 17949.

[14]

Bushuev Y G, Sastre G. J. Phys. Chem. C, 2010, 114: 19157.

[15]

Wragg D S, Morris R E, Burton A W. Chem. Mater., 2008, 20: 1561.

[16]

Bialek R, Meier W M, Davis M, Annen M J. Zeolites, 1991, 11: 438.

[17]

Villaescusa L A, Barrett P A, Camblor M A. Chem. Mater., 1998, 10: 3966.

[18]

Burton A, Darton R J, Davis M E, Hwang S-J, Morris R E, Ogino I, Zones S I. J. Phys. Chem. B, 200, 110: 5273.

[19]

Vattipalli V, Paracha A M, Hu W G, Chen H Y, Fan W. Angew. Chem. Int. Ed., 2018, 57: 3607.

[20]

Cantín Á, Corma A, Díaz-Cabañas M J, Jordá J L, Moliner M, Rey F. Angew. Chem. Int. Ed., 200, 45: 8013.

[21]

Marler B, Camblor M A, Gies H. Microporous Mesoporous Mater., 200, 90: 87.

[22]

Ikeda T, Akiyama Y, Oumi Y, Kawai A, Mizukami F. Angew. Chem. Int. Ed., 2004, 43: 4892.

[23]

Barrett P A, Díaz-Cabañas M J, Camblor M A, Jones R H. J. Chem. Soc. Faraday Trans., 1998, 94: 2475.

[24]

Schmidt J E, Xie D, Rea T, Davis M E. Chem. Sci., 2015, 6: 1728.

[25]

Ronchi L, Ryzhikov A, Nouali H, Daou T J, Patarin J. J. Phys. Chem. C, 2018, 122: 2726.

[26]

Gerke H, Gies H. Z. Kristallogr.: Cryst. Mater., 1984, 166: 11.

[27]

Freyhardt C C, Tsapatsis M, Lobo R F, Balkus K J, Davis M E. Nature, 199, 381: 295.

[28]

Liu X L, Ravon U, Tuel A. Microporous Mesoporous Mater., 2012, 156: 257.

[29]

Willhammar T, Burton A W, Yun Y F, Sun J L, Afeworki M, Strohmaier K G, Vroman H, Zou X D. J. Am. Chem. Soc., 2014, 136: 13570.

[30]

Gies H, Gunawardane R P. Zeolites, 1987, 7: 442.

[31]

Plévert J, Kubota Y, Honda T, Okubo T, Sugi Y. Chem. Commun., 2000 2363.

[32]

Barrett P A, Camblor M A, Corma A, Jones R H, Villaescusa L A. Chem. Mater., 1997, 9: 1713.

[33]

Jordá J L, Rey F, Sastre G, Valencia S, Palomino M, Corma A, Segura A, Errandonea D, Lacomba R, Manjón F J, Gomis Ó, Kleppe A K, Jephcoat A P, Amboage M, Rodríguez-Velamazán J A. Angew. Chem. Int. Ed., 2013, 52: 10458.

[34]

Cantín A, Corma A, Leiva S, Rey F, Rius J, Valencia S. J. Am. Chem. Soc., 2005, 127: 11560.

[35]

Villaescusa L A, Barrett P A, Camblor M A. Angew. Chem. Int. Ed., 1999, 38: 1997.

[36]

Camblor M A, Corma A, Lightfoot P, Villaescusa L A, Wright P A. Angew. Chem. Int. Ed., 1997, 36: 2659.

[37]

Corma A, Puche M, Rey F, Sankar G, Teat S J. Angew. Chem. Int. Ed., 2003, 42: 1156.

[38]

Willhammar T, Sun J, Wan W, Oleynikov P, Zhang D L, Zou X D, Moliner M, Gonzalez J, Martínez C, Rey F, Corma A. Nat. Chem., 2012, 4: 188.

[39]

Yang X B, Camblor M A, Lee Y, Liu H M, Olson D H. J. Am. Chem. Soc., 2004, 126: 10403.

[40]

Kemp K C, Seo S, Ahn S H, Hong S B. Chem. Lett., 2019, 48: 1445.

[41]

Corma A, Rey F, Rius J, Sabater M J, Valencia S. Nature, 2004, 431: 287.

[42]

Fyfe C A, Gies H. J. Inclusion Phenom. Mol. Recognit. Chem., 1990, 8: 235.

[43]

Moteki T, Keoh S H, Ohmura T, Iyoki K, Wakihara T, Okubo T. J. Ceram. Soc. Jpn., 2013, 121: 575.

[44]

Koyama Y, Ikeda T, Tatsumi T, Kubota Y. Angew. Chem. Int. Ed., 2008, 47: 1042.

[45]

Barrett P A, Díaz-Cabañas M-J, Camblor M A. Chem. Mater., 1999, 11: 2919.

[46]

Ren L M, Wu Q M, Yang C G, Zhu L F, Li C J, Zhang P L, Zhang H Y, Meng X J, Xiao F-S. J. Am. Chem. Soc., 2012, 134: 15173.

[47]

Ryzhikov A, Khay I, Nouali H, Daou T J, Patarin J. RSC Adv., 2014, 4: 37655.

[48]

Mitra A, Kirby C W, Wang Z B, Huang L M, Wang H, Huang Y N, Yan Y S. Microporous Mesoporous Mater., 2002, 54: 175.

[49]

Camblor M A, Corma A, Díaz-Cabañas M-J, Baerlocher C. J. Phys. Chem. B, 1998, 102: 44.

[50]

Marler B, Dehnbostel N, Eulert H H, Gies H, Liebau F. J. Inclusion Phenom., 198, 4: 339.

[51]

Zanardi S, Alberti A, Cruciani G, Corma A, Fornés V, Brunelli M. Angew. Chem. Int. Ed., 2004, 43: 4933.

[52]

Verheyen E, Joos L, Havenbergh K V, Breynaert E, Kasian N, Gobechiya E, Houthoofd K, Martineau C, Hinterstein M, Taulelle F, Speybroeck V V, Waroquier M, Bals S, Tendeloo G V, Kirschhock C E A, Martens J A. Nat. Mater., 2012, 11: 1059.

[53]

Roth W J, Nachtigall P, Morris R E, Wheatley P S, Seymour V R, Ashbrook S E, Chlubná P, Grajciar L, Položij M, Zukal A, Shvets O, Čejka J. Nat. Chem., 2013, 5: 628.

[54]

Wheatley P S, Chlubná-Eliášová P, Greer H, Zhou W Z, Seymour V R, Dawson D M, Ashbrook S E, Pinar A B, McCusker L B, Opanasenko M, Čejka J, Morris R E. Angew. Chem. Int. Ed., 2014, 53: 13210.

[55]

Wang Y X, Gies H, Marler B, Müller U. Chem. Mater., 2005, 17: 43.

[56]

Marler B, Grünewald-Lüke A, Gies H. Zeolites, 1995, 15: 388.

[57]

Kim C, Hwang S-J, Burton A W, Zones S I. Microporous Mesoporous Mater., 2008, 116: 227.

[58]

Marler B, Werthmann U, Gies H. Microporous Mesoporous Mater., 2001, 43: 329.

[59]

Marler B, Ströter N, Gies H. Microporous Mesoporous Mater., 2005, 83: 201.

[60]

Wragg D S, Morris R, Burton A W, Zones S I, Ong K, Lee G. Chem. Mater., 2007, 19: 3924.

[61]

Darton R J, Brouwer D H, Fyfe C A, Villaescusa L A, Morris R E. Chem. Mater., 2004, 16: 600.

[62]

Baerlocher C, Weber T, McCusker L B, Palatinus L, Zones S I. Science, 2011, 333: 1134.

[63]

Grünewald-Lüke A, Marler B, Gies H. Z. Kristallogr.: New Cryst. Struct., 2001, 216: 655.

[64]

Bibby D M, Dale M P. Nature, 1985, 317: 157.

[65]

Smeets S, Xie D, Baerlocher C, McCusker L B, Wan W, Zou X D, Zones S I. Angew. Chem. Int. Ed., 2014, 53: 10398.

[66]

Villaescusa L A, Barrett P A, Camblor M A. Chem. Commun., 1998 2329.

[67]

Lobo R F, Tsapatsis M, Freyhardt C C, Chan I, Chen C-Y, Zones S I, Davis M E. J. Am. Chem. Soc., 1997, 119: 3732.

[68]

Rojas A, Arteaga O, Kahr B, Camblor M A. J. Am. Chem. Soc., 2013, 135: 11975.

[69]

Isaac C, Deroche I, Paillaud J-L, Daou T J, Ryzhikov A, Michelin L, Rigolet S, Josien L, Nouali H. Cryst. Growth Des., 2021, 21: 4013.

[70]

Smeets S, Berkson Z J, Xie D, Zones S I, Wan W, Zou X D, Hsieh M-F, Chmelka B F, McCusker L B, Baerlocher C. J. Am. Chem. Soc., 2017, 139: 16803.

[71]

Marler B. Zeolites, 1987, 7: 393.

[72]

Jones C W, Hwang S-J, Okubo T, Davis M E. Chem. Mater., 2001, 13: 1041.

[73]

Fyfe C A, Gobbi G C, Kennedy G J, Schutter C T D, Murphy W J, Ozubko R S, Slack D A. Chem. Lett., 1984, 13: 163.

[74]

Klinowski J, Thomas J M, Fyfe C A, Gobbi G C, Hartman J S. Inorg. Chem., 1983, 22: 63.

[75]

Schmitt K D, Kennedy G J. Zeolites, 1994, 14: 635.

[76]

Kolodziejski W, Barrie P J, He H, Klinowski J. J. Chem. Soc., Chem. Commun., 1991 961.

[77]

Fyfe C A, Gobbi G C, Murphy W J, Ozubko R S, Slack D A. Chem. Lett., 1983, 12: 1547.

[78]

Xu R R, Pang W Q, Huo Q S, Yu J H, Chen J S, Su B L, Qiu S L, Yan W F. Molecular Sieve and Porous Material Chemistry, 2004.

[79]

Flanigen E. M., Patton R. L., Silica Polymorph and Process for Preparing Same, US 4073865, 1978

[80]

Kessler H, Robson H, Lillerud K P. Verified Syntheses of Zeolitic Materials, 2001, Amsterdam: Elsevier Science 25.

[81]

Camblor M A, Corma A, Valencia S. Chem. Commun., 1996 2365.

[82]

Blasco T, Camblor M A, Corma A, Esteve P, Guil J M, Martínez A, Perdigón-Melón J A, Valencia S. J. Phys. Chem. B, 1998, 102: 75.

[83]

Barrett P A, Camblor M A, Corma A, Jones R H, Villaescusa L A. J. Phys. Chem. B, 1998, 102: 4147.

[84]

Camblor M A, Villaescusa L A, Díaz-Cabañas M J. Top. Catal., 1999, 9: 59.

[85]

Tzanis L, Trzpit M, Soulard M, Patarin J. J. Phys. Chem. C, 2012, 116: 4802.

[86]

Hunt H K, Lew C M, Sun M, Yan Y, Davis M E. Microporous Mesoporous Mater., 2010, 130: 49.

[87]

Boal B W, Schmidt J E, Deimund M A, Deem M W, Henling L M, Brand S K, Zones S I, Davis M E. Chem. Mater., 2015, 27: 7774.

[88]

Tong M Q, Xu R R, Yan W F, Yu J H. Chem. J. Chinese Universities, 2013, 34(3): 494.

[89]

Guo W, Yan W F, Xu R R, Wang Y R, Mu X H. Chem. J. Chinese Universities, 2014, 35(7): 1363.

[90]

Tong M Q, Zhang D L, Fan W B, Xu J, Zhu L K, Guo W, Yan W F, Yu J H, Qiu S L, Wang J G, Deng F, Xu R R. Sci. Rep., 2015, 5: 11521.

[91]

Lu T T, Xu R R, Yan W F. Micropor. Mesopor. Mater., 201, 226: 19.

[92]

Lu T T, Gao P, Xu J, Wang Y R, Yan W F, Yu J H, Deng F, Mu X H, Xu R R. Chin. J. Catal., 2015, 36: 889.

[93]

Lu T T, Zhu L K, Wang X H, Yan W F, Shi W, Xu R R. Inorg. Chem. Front., 2018, 5: 802.

[94]

Lu T T, Zhu L K, Wang X H, Yan W F, Shi W, Xu R R. Inorg. Chem. Front., 2018, 5: 1640.

[95]

Lu T T, Yan W F, Xu R R. Inorg. Chem. Front., 2019, 6: 1938.

[96]

Shi D, Haw K-G, Kouvatas C, Tang L, Zhang Y, Fang Q, Qiu S, Valtchev V. Angew. Chem. Int. Ed., 2020, 59: 19576.

[97]

Xu W Y, Dong J X, Li J P, Li J Q, Wu F. J. Chem. Soc., Chem. Commun., 1990 755.

[98]

Matsukata M, Osaki T, Ogura M, Kikuchi E. Microporous Mesoporous Mater., 2002, 56: 1.

[99]

Shinno Y, Iyoki K, Ohara K, Yanaba Y, Naraki Y, Okubo T, Wakihara T. Angew. Chem. Int. Ed., 2020, 59: 20099.

[100]

Navarro U, Trujillo C A, Oviedo A, Lobo R. J. Catal., 2002, 211: 64.

[101]

Wang J Y, Liu P S, Boronat M, Ferri P, Xu Z G, Liu P, Shen B J, Wang Z D, Yu J H. Angew. Chem. Int. Ed., 2020, 59: 17225.

[102]

Zhu D L, Wang L Y, Fan D, Yan N N, Huang S J, Xu S T, Guo P, Yang M, Zhang J M, Tian P, Liu Z M. Adv. Mater., 2020, 32: 2000272.

[103]

Beyer H K, Belenykaja I M, Hange F, Tielen M, Grobet P J, Jacobs P A. J. Chem. Soc., Faraday Trans. 1, 1985, 81: 2889.

[104]

Wu Q M, Zhu L F, Chu Y Y, Liu X L, Zhang C S, Zhang J, Xu H, Xu J, Deng F, Feng Z C, Meng X J, Xiao F-S. Angew. Chem. Int. Ed., 2019, 58: 12138.

[105]

Andrews S J, Papiz M Z, McMeeking R, Blake A J, Lowe B M, Franklin K R, Helliwell J R, Harding M M. Acta Cryst., 1988, 44: 73.

[106]

Burton A, Accardi R J, Lobo R F, Falcioni M, Deem M W. Chem. Mater., 2000, 12: 2936.

[107]

Schreyeck L, Caullet P, Mougenel J C, Guth J L, Marler B. Microporous Mater., 199, 6: 259.

[108]

Huppertz H. Chem. Commun., 2011, 47: 131.

[109]

Manjón F J, Errandonea D. Phys. Status Solidi. B, 2009, 246: 9.

[110]

Gatta G D. Microporous Mesoporous Mater., 2010, 128: 78.

[111]

Gatta G D, Comodi P, Zanazzi P F. Microporous Mesoporous Mater., 2003, 61: 105.

[112]

Greaves G N, Meneau F, Sapelkin A, Colyer L M, Gwynn I A, Wade S, Sankar G. Nat. Mater., 2003, 2: 622.

[113]

Greaves G N, Meneau F, Kargl F, Ward D, Holliman P, Albergamo F. J. Phys.: Condens. Matter, 2007, 19: 415102.

[114]

Eliášová P, Opanasenko M, Wheatley P S, Shamzhy M, Mazur M, Nachtigall P, Roth W J, Morris R E, Čejka J. Chem. Soc. Rev., 2015, 44: 7177.

[115]

Roth W J, Nachtigall P, Morris R E, Čejka J. Chem. Rev., 2014, 114: 4807.

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