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A THEORETICAL STUDY OF THE EFFECTS OF PROTONATION AND DEPROTONATION ON BOND DISSOCIATION ENERGIES

机译:质子化和去质子化对键解离能影响的理论研究

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Ab initio molecular orbital calculations indicate that the bond dissociation energies (BDE) for homolytic cleavage of CX bonds (X = C, N, O, F) are increased by protonation of the corresponding alkyl, amine, alcohol, or fluoride functional groups; the effect of deprotonation of these groups is rather small for saturated species, whereas for unsaturated ones deprotonation leads to large increases in the CX BDEs. The effects on the CC BDEs in CCX compounds are quite systematic: protonation of X increases the CC BDE, while the converse holds for deprotonation. Two types of correlation between bond lengths and homolytic bond dissociation energies are observed. Firstly, protonation and deprotonation lead to a normal correlation for the adjacent CC bonds: the bond length decreases as the BDE increases. Protonation, however, results in an anomalous correlation for the CX bonds: the bond length increases as the BDE increases. These observations are rationalized in terms of electronegativity, resonance stabilization, and competing heterolytic dissociation. [References: 18]
机译:从头算的分子轨道计算表明,对CX键(X = C,N,O,F)进行均相裂解的键解离能(BDE)通过相应的烷基,胺,醇或氟化物官能团的质子化而增加;这些基团的去质子化作用对于饱和物质而言是很小的,而对于不饱和物质,去质子化作用会导致CX BDEs大量增加。对CCX化合物中CC BDEs的影响是相当系统的:X的质子化会增加CC BDE,反之则是去质子化。观察到键长与均溶键解离能之间的两种相关性。首先,质子化和去质子化导致相邻CC键具有正相关:键长度随BDE的增加而减小。但是,质子化会导致CX键的异常相关:键长度随着BDE的增加而增加。这些观察在电负性,共振稳定和竞争性杂解离解方面是合理的。 [参考:18]

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