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54249164415
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34
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54249123508
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Unless otherwise specified, all thermochemical values are derived from Linstrom, P. J., Mallard, W. G. , Eds. NIST Chemistry WebBook: NIST Standard Reference Database Number 69, National Institute of Standards and Technology: Gaithersburg, MD, 2005 (http://webbook.nist.gov).
-
Unless otherwise specified, all thermochemical values are derived from Linstrom, P. J., Mallard, W. G. , Eds. NIST Chemistry WebBook: NIST Standard Reference Database Number 69, National Institute of Standards and Technology: Gaithersburg, MD, 2005 (http://webbook.nist.gov).
-
-
-
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35
-
-
54249136643
-
-
- anion.
-
- anion.
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36
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0001700458
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Tanner, S. D.; Mackay, G. I.; Bohme, D. K. Can. J. Chem. 1981, 59, 1615.
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37
-
-
54249109257
-
-
A minor amount of deprotonated acetone (m/z 57) is also observed (∼1%). The origin is unknown; however, it may arise from an acetone impurity either in the reagent or formed during the gas handling.
-
A minor amount of deprotonated acetone (m/z 57) is also observed (∼1%). The origin is unknown; however, it may arise from an acetone impurity either in the reagent or formed during the gas handling.
-
-
-
-
38
-
-
54249140387
-
-
-.
-
-.
-
-
-
-
39
-
-
0001343481
-
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DePuy, C. H.; Gronert, S.; Mullin, A.; Bierbaum, V. M. J. Am. Chem. Soc. 1990, 112, 8650.
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40
-
-
54249113558
-
-
- deprotonation of ROH impurities, which could be formed in situ under experimental conditions via heterogeneous decompositions of the alkyl hydroperoxides in the gas transfer line and/or the flow tube, as observed for HOOH (ref 41).
-
- deprotonation of ROH impurities, which could be formed in situ under experimental conditions via heterogeneous decompositions of the alkyl hydroperoxides in the gas transfer line and/or the flow tube, as observed for HOOH (ref 41).
-
-
-
-
41
-
-
0037168326
-
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Ramond, T. M.; Blanksby, S. J.; Kato, S.; Bierbaum, V. M.; Davico, G. E.; Schwartz, R. L.; Lineberger, W. C.; Ellison, G. B. J. Phys. Chem. A 2002, 106, 9641.
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42
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0037934469
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54249125280
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Tours, France, cited in Haas et al
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50
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0000857930
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52
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54249146357
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-
In the earlier work, the ratio of HO- to DO- was reported to be ∼6:1 ref 5, The revised ratio comes from full analysis to extract the primary branching ratio, which corresponds to the relative product yields of HO, 82, and DO, 5
-
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53
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0000466793
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