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5
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0033583720
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3, where no chelate can form, the quantum yield is 0.82. Please see the following: Jiao, T.; Pang, Z.; Burkey, T. J.; Johnston, R. F.; Heimer, T. A.; Kleiman, V. D.; Heilweil, E. J. J. Am. Chem. Soc. 1999, 121, 4618.
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3, where no chelate can form, the quantum yield is 0.82. Please see the following: Jiao, T.; Pang, Z.; Burkey, T. J.; Johnston, R. F.; Heimer, T. A.; Kleiman, V. D.; Heilweil, E. J. J. Am. Chem. Soc. 1999, 121, 4618.
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14
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34548220470
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1H NMR (270 MHz, CDCl3, 298 K, δ 2.15 (s, 3H, SCH3, 3.84 (s, 2H, CH2, 5.27 (m, 2H, C 6H5, 5.65 (m, 1H, C6H5, 6.12 m, 2H, C6H5
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5).
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15
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34548265165
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5).
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5).
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16
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34548271474
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5).
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5).
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17
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34548277905
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Certain commercial equipment, instruments, or materials are identified in this paper in order to adequately specify the experimental procedure. In no case does such identification imply recommendation or endorsement by NIST, nor does it imply that the materials or equipment identified are necessarily the best available for the purpose
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Certain commercial equipment, instruments, or materials are identified in this paper in order to adequately specify the experimental procedure. In no case does such identification imply recommendation or endorsement by NIST, nor does it imply that the materials or equipment identified are necessarily the best available for the purpose.
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19
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0000579745
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(a) Creavens, B. S.; George, M. W.; Ginsburg, A. G.; Hughes, C.; Kelly, J. M.; Long, C.; McGrath, K. M.; Pryce, M. T. Organometallics 1993, 12, 3127.
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Poliakoff, M.7
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21
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34548278408
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16 and this would also be the case by the time the chelate forms.
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16 and this would also be the case by the time the chelate forms.
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22
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0001606218
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Rayner, D. M.; Ishikawa, Y.; Brown, C. E.; Hackett, P. A. J. Chem. Phys. 1991, 94, 5471.
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