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85153311750
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Recent patents dealing with the synthesis or uses of 1 are: a) T. Sell, J. Schottek, N. S. Paczkowski, A. Winter Novolen Technology, WO 2006124231, 2006;
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Recent patents dealing with the synthesis or uses of 1 are: a) T. Sell, J. Schottek, N. S. Paczkowski, A. Winter (Novolen Technology), WO 2006124231, 2006;
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18
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WO 04041871
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Kratzer, R.1
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R. Kratzer, V. Fraaije Basell Polyolefins, WO 04007569, 2004;
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e) R. Kratzer, V. Fraaije (Basell Polyolefins), WO 04007569, 2004;
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21
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K. Takei, K. Mizuta, K. Aoki, K. Takebe (Nippon Shokubai Co.), JP 2004265785, 2004;
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f) K. Takei, K. Mizuta, K. Aoki, K. Takebe (Nippon Shokubai Co.), JP 2004265785, 2004;
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22
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85153274993
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I. Ikeno, H. Mitsui, T. Iida, T. Moriguchi Nippon Shokubai Co, WO 0248156, 2002;
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g) I. Ikeno, H. Mitsui, T. Iida, T. Moriguchi (Nippon Shokubai Co.), WO 0248156, 2002;
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23
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I. Ikeno, H. Mitsui, T. Iida, T. Moriguchi Nippon Shokubai Co, WO 0244185, 2002;
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h) I. Ikeno, H. Mitsui, T. Iida, T. Moriguchi (Nippon Shokubai Co.), WO 0244185, 2002;
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24
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85153242853
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J. Schottek, C. Fritze Targor, DE 10009714, 2001;
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i) J. Schottek, C. Fritze (Targor), DE 10009714, 2001;
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25
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85153186283
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DE 10059717
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j) R. Kratzer (Basell Polyolefins), DE 10059717, 2001;
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R. Kratzer, C. Fritze, J. Schottek Targor, DE 19962814, 2001;
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J. M. Frances, T. Deforth Rhodia Chimie, WO 0130903, 2001;
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28
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85153251149
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J. Schottek, C. Fritze, H. Bohnen, P. Becker Targor, WO 0020466, 2000;
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m) J. Schottek, C. Fritze, H. Bohnen, P. Becker (Targor), WO 0020466, 2000;
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29
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H. Bohnen, U. Hahn Aventis R&T GmbH, DE 19843055, 2000;
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n) H. Bohnen, U. Hahn (Aventis R&T GmbH), DE 19843055, 2000;
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H. Bohnen Hoechst A.-G, DE 19733017, 1999;
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o) H. Bohnen (Hoechst A.-G.), DE 19733017, 1999;
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H. Bohnen, H. Hahn (Aventis R&T GmbH), WO0017208, 2000.
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p) H. Bohnen, H. Hahn (Aventis R&T GmbH), WO0017208, 2000.
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85153319079
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The existence of a solid-state structure of 1 was previously mentioned in a footnote of R. A. Metcalfe, D. I. Kreller, J. Tian, H. Kim, N. J. Taylor, J. F. Corrigan, S. Collins, Organometallics 2002, 21, 1719-1726.
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The existence of a solid-state structure of 1 was previously mentioned in a footnote of R. A. Metcalfe, D. I. Kreller, J. Tian, H. Kim, N. J. Taylor, J. F. Corrigan, S. Collins, Organometallics 2002, 21, 1719-1726.
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85153174300
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[17] is very close to that of water (0.367 vs. 0.353).
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[17] is very close to that of water (0.367 vs. 0.353).
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40
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11B NMR spectroscopic data at low temperatures; see for instance: J. D. Kennedy in Multinuclear NMR (Ed.: J. Mason), Plenum Press, New York, 1987, pp. 221-258.
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It is interesting to observe that in a series of pyrazolato-based dizinc(II) complexes the -(Me)OHO(H)- bridging ligand can assume either one of the two limiting structures, that is -(Me)OH⋯O(H)- or -(Me)O⋯HO(H)-, when the pyrazolato moiety is varied: a) B. Bauer-Siebenlist, F. Meyer, E. Farkas, D. Vidovic, J. A. Cuesta-Seijo, R. Herbst-Irmer, H. Pritzkow, Inorg. Chem. 2004, 43, 4189-4202;
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It is interesting to observe that in a series of pyrazolato-based dizinc(II) complexes the -(Me)OHO(H)- bridging ligand can assume either one of the two limiting structures, that is -(Me)OH⋯O(H)- or -(Me)O⋯HO(H)-, when the pyrazolato moiety is varied: a) B. Bauer-Siebenlist, F. Meyer, E. Farkas, D. Vidovic, J. A. Cuesta-Seijo, R. Herbst-Irmer, H. Pritzkow, Inorg. Chem. 2004, 43, 4189-4202;
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85153242870
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Some methyl borinate was formed also by the direct reaction of MeOH with the anhydride present in the initial solution: Ar2BOBAr2, MeOH ⇄ Ar2BOMe, Ar2BOH
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85153316904
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[9] spectroscopic data, respectively.
-
[9] spectroscopic data, respectively.
-
-
-
|