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A synthetic Zn-substituted smectite clay alkylation catalyst

  • V. Luca (a1), L. Kevan (a1), C. N. Rhodes (a1) and D. R. Brown (a1)

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Brindley, G. W., & Brown, G. (1980) Crystal Structures of Clay Minerals and their X-ray Identification. Mineralogical Society, London.
Clark, J.H., Kybett, A.P., Macquarrie, D.J., Barlow, D.J. & Landon, P. (1989) Montmorillonite supported transition metal salts as Friedel-Crafts alkylation catalysts. J. Chem. Soc., Chem. Commun., 1353–;1354.
Cornelis, A. (1987) Practical considerations: how to set up a supported reagent. Pp. 99 in: Preparative Chemistry Using Supported Reagents(Laszlo, P., editor). Academic Press, London.
Laszlo, P. (1987) Chemical Reactions on Clays. Science, 235, 1473–1477.
Laszlo, P. & Mathy, A. (1987) Catalysis of Friedel-Crafts alkylations by a montmorillonite doped with transition metal ions. Helv. Chim. Acta, 70, 577–586.
Luca, V., Chen, X. & Kevan, L. (1991) Characterization of Cu(II) substituted synthesized fluorohectorite clay and interactions with adsorbates with ESR, ESEEM and IR spectroscopies. Chem. Mail., 3, 1073–1081.
Parry, E.P. (1963) An infrared study of pyridine adsorbed on acidic solids, characterisation of surface acidity. J. Catal., 2, 371–379.
Pinnavaia, T.J. (1983) Intercalated day catalysts. Science, 220, 365–370.
Urabe, K., Sakurai, H. & Izumi, Y. (1986) Pillared synthetic saponite as an efficient alkylation catalyst. J. Chem. Soc., Chem. Commun., 1074–;1076.

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