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The literature on organic-inorganic hybrid materials is voluminous. Some recent reviews and representative articles include: S. Kitagawa, S. Noro, Comprehensive Coordination Chemistry II, 7, Elsevier Pergamon, 2004, p. 231.
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The literature on organic-inorganic hybrid materials is voluminous. Some recent reviews and representative articles include: S. Kitagawa, S. Noro, Comprehensive Coordination Chemistry II, vol. 7, Elsevier Pergamon, 2004, p. 231.
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5
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0034830906
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Eddaoudi M., Moler D.B., Li H., Chen B., Reineke T.M., O'Keeffe M., and Yaghi O.M. Acc. Chem. Res. 34 (2001) 319
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Eddaoudi, M.1
Moler, D.B.2
Li, H.3
Chen, B.4
Reineke, T.M.5
O'Keeffe, M.6
Yaghi, O.M.7
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7
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and references therein
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Janiak C. Dalton Trans. (2003) 2781 and references therein
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Janiak, C.1
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The properties of inorganic-organic hybrids, specifically metal-organic frameworks (MOF) have been extensively discussed in recent years. For example
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The properties of inorganic-organic hybrids, specifically metal-organic frameworks (MOF) have been extensively discussed in recent years. For example. Chen B., Ockwig N.W., Millward A.R., Contreras S.D., and Yaghi O.M. Angew. Chem. Int. Ed. Eng. 44 (2005) 4745
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Chen, B.1
Ockwig, N.W.2
Millward, A.R.3
Contreras, S.D.4
Yaghi, O.M.5
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Bradshaw D., Claridge J.B., Cussen E.J., Prior T.J., and Rosseinsky M.J. Chem. Res. 38 (2005) 273
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Chem. Res.
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Bradshaw, D.1
Claridge, J.B.2
Cussen, E.J.3
Prior, T.J.4
Rosseinsky, M.J.5
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11
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Kitaura R., Kitagawa S., Kubtoa Y., Kobayashi T.C., Kindo K., Mita Y., Matsuo A., Kobayashi M., Chang H.-C., Ozawa T.C., Suzuki M., Sakata M., and Takata M. Science 298 (2002) 2358
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Kitaura, R.1
Kitagawa, S.2
Kubtoa, Y.3
Kobayashi, T.C.4
Kindo, K.5
Mita, Y.6
Matsuo, A.7
Kobayashi, M.8
Chang, H.-C.9
Ozawa, T.C.10
Suzuki, M.11
Sakata, M.12
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Bradshaw D., Prior T.J., Cussen E.J., Claridge J.B., and Rosseinsky M.J. J. Am. Chem. Soc. 126 (2004) 6106
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Bradshaw, D.1
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Halder G.J., Kepert C.J., Moubaraki B., Murray K.S., and Cashion J.D. Science 298 (2002) 1762
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Science
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Halder, G.J.1
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Murray, K.S.4
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52449121242
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Morris W., Doonan C.J., Furukawa H., Banerjee R., and Yaghi O.M. J. Am. Chem. Soc. 130 (2008) 12626
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Morris, W.1
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Banerjee, R.4
Yaghi, O.M.5
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51349145126
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Furukawa H., Kim J., Ockwig N.W., O'Keeffe M., and Yaghi O.M. J. Am. Chem. Soc. 130 (2008) 11650
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Furukawa, H.1
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Ockwig, N.W.3
O'Keeffe, M.4
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Yaghi O.M., O'Keeffe M., Ockwig N.W., Chae H.K., Eddaoudi M., and Kim J. Nature 423 (2003) 705
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Eddaoudi, M.5
Kim, J.6
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21
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0034830906
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Eddaoudi M., Moler D.B., Li H., Chen B., Reineke T.M., O'Keeffe M., and Yaghi O.M. Acc. Chem. Res. 34 (2001) 319
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(2001)
Acc. Chem. Res.
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Eddaoudi, M.1
Moler, D.B.2
Li, H.3
Chen, B.4
Reineke, T.M.5
O'Keeffe, M.6
Yaghi, O.M.7
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Wang B., Cote A.P., Furukawa H., O'Keeffe M., and Yaghi O.M. Nature 453 (2008) 207
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Nature
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Wang, B.1
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Banerjee R., Phan A., Wang B., Knobler C., Furukawa H., O'Keeffe M., and Yaghi O.M. Science 319 (2008) 939
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Science
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Banerjee, R.1
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Li J.-R., Tao Y., Yu Q., Bu X.-H., Sakamoto H., and Kitagawa S. Chem. Eur. J. 14 (2008) 2771
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M.J. Zaworotko, Crystal Engineering: The Design and Application of Functional Solids, NATO ASI Series, Series C: Mathematical and Physical Sciences, vol. 539, Kluwer Academic, 1999, p. 383.
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55549128616
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Metal-organophosphonates are prototypical organic-inorganic hybrid materials whose chemistry has been extensively explored
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Metal-organophosphonates are prototypical organic-inorganic hybrid materials whose chemistry has been extensively explored. Clearfield A. Dalton Trans. (2008) 6089
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Clearfield, A.1
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Ouellette W., Wang G., Liu H., Yee G.T., O'Connor C.J., and Zubieta J. Inorg. Chem. 48 (2009) 953
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68
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74149089436
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note
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-1): 3466(w), 1600(w), 1442(w), 1130(s) 1009(w), 990.17(w), 947(m), 927(m), 893(m), 774.90(s), 567(m).
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73
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84865784780
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J.A. McCleverty, T.J. Meyer Eds, Elsevier Pergamon
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J. Zubieta, in: J.A. McCleverty, T.J. Meyer (Eds.), Solid State Methods, Hydrothermal in Comprehensive Coordination Chemistry II, vol. 1, Elsevier Pergamon, 2004, p. 697.
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(2004)
Solid State Methods, Hydrothermal in Comprehensive Coordination Chemistry II
, vol.1
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Zubieta, J.1
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74
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74149090879
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note
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2 = 0.1125 for 5792 independent reflections (all data to 28.28°).
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75
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74149092193
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note
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TI = 0.000136 emu/mol.
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