Polyoxomolybdate clusters and copper–organonitrogen complexes as building blocks for the construction of composite solids

Author:

Hagrman Douglas,Hagrman Pamela,Zubieta Jon

Publisher

Elsevier BV

Subject

Materials Chemistry,Inorganic Chemistry,Physical and Theoretical Chemistry

Reference46 articles.

1. See for example: (a) T.G. Reynolds, R.C. Buchanan, in: R.C. Buchanan (Ed.), Ceramic Materials for Electronics, 2nd ed., Marcel Dekker, New York, 1991, pp. 207–248. (b) W. Büchner, R. Schliebs, G. Winter, K.H. Büchel, Industrial Inorganic Chemistry, VCH, New York, 1989. (c) W.H. McCarroll, in: R.B. King (Ed.), Encyclopedia of Inorganic Chemistry, vol. 6, Wiley, New York, 1994, pp. 2903–2946. (d) G.H. Haertling, in: R.C. Buchanan (Ed.), Ceramic Materials for Electronics, 2nd ed., Marcel Dekker, New York, 1991, pp. 129–206. (e) H.W. Leverenz, Luminescence of Solids, Wiley, New York, 1980. (f) R. Einzinger, Ann. Rev. Mater. Sci. 17 (1987) 299. (g) J.M. Tarascon, P. Barboux, P.F. Miceli, L.H. Greene, G.W. Hull, M. Eibschutz, S.A. Sunshine, Phys. Rev. B37 (1988) 7458. (h) D.I. Matkin, in: B. Cockayne, D.W. Jones (eds), Modern Oxide Materials, Academic Press, New York, 1972, pp. 235–257. (i) C.N.R. Rao, K.J. Rao, in: A.-K. Cheetham, P. Day (Eds.), Solid State Compounds, Clarendon Press, Oxford, 1992, pp. 281–296. (j) J.D. Bierlein, C.B. Arweiler, Appl. Phys. Lett. 49 (1987) 917. (k) G. Centi, F. Trifuro, J.R. Ebner, V.M. Franchetti, Chem. Rev. 88 (1988) 55. (l) R.K. Grasselli, Appl. Catal. 15 (1985) 127. (m) M. Gasior, I. Gasior, B. Grzybowska, Appl. Catal. 10 (1984) 87. (n) T. Okuhara, M. Misono, in: RR. King (Ed.), Encyclopedia of Inorganic Chemistry, vol. 6, Wiley, New York, 1994, pp. 2889–2903. (o) H. Niiyama, E. Echigoya, Bull. Chem. Soc. Jpn. 45 (1972) 83. (p) T. Yamaguchi, Appl. Catal. 61 (1990) 1. (q) A. Clearfield, Chem. Rev. 88 (1988) 125. (r) J.M. Newsam, in: A.K. Cheetham, P. Day (Eds.), Solid State Compounds, Clarendon Press, Oxford, 1992, pp. 234–280. (s) D.M. Ruthven, Principles of Absorption and Absorption Processes, Wiley-Interscience, New York, 1984. (t) R. Szostak, Moleculer Sieves — Principles of Synthesis and Identification, Van Nostrand Rheinhold, New York, 1988. (u) J.A. Raleo, Zeolite Chemistry and Catalysis, ACS Monograph (7), American Chemical Society, Washington, DC, 1976. (v) Y. Murakami, A. Iijima, J.W. Ward (Eds.), New Developments in Zeolite Science, Elsevier, Amsterdam, 1986. (w) D.E.W. Vaughan, in: R.P. Townsend (Ed.), Properties and Applications of Zeolites, Chem. Soc. Special Publ. No. 33, The Chemical Society, London, 1979, p. 294. A.K. Cheetham, Science 264 (1994) 794. (x) P.B. Venuto, Microporous Materials 2 (1994) 297. (y) J.V. Smith, Chem. Rev. 88 (1988) 149. (z) M.L. Occelli, H.C. Robson, Zeolite Synthesis, American Chemical Society, Washington, DC, 1989.

2. Molybdenum: An Outline of its Chemistry and Uses;Braithwaite,1994

3. Molybdenum Oxygen Chemistry: Oxides, Oxo Complexes, and Polyoxoanions

4. Heteropoly and Isopoly Oxometalates;Pope,1983

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