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质子转移反应中的有效摩尔浓度(EM)难题。

The effective molarity (EM) puzzle in proton transfer reactions.

作者信息

Karaman Rafik

机构信息

Faculty of Pharmacy, Al-Quds University, Jerusalem, Palestinian Territories.

出版信息

Bioorg Chem. 2009 Aug;37(4):106-10. doi: 10.1016/j.bioorg.2009.04.003. Epub 2009 May 5.

Abstract

The DFT and HF calculation results for the proton transfer reactions of three different systems reveal that the reaction mechanism (transfer of a proton to a nucleophile) is largely determined by the distance between the two reactive centers (r). Systems with relatively large r values tend to abstract a proton from a molecule of water, whereas, these with a relatively small r values prefer to be engaged intramolecularly and their interaction with water is only via hydrogen bonding. Further, the results indicate that the effective molarity (logEM) for an intramolecular process is strongly correlated with the distance between the two reacting centers (r) in accordance with Menger's "spatiotemporal hypothesis".

摘要

三种不同体系质子转移反应的密度泛函理论(DFT)和哈特里-福克(HF)计算结果表明,反应机理(质子转移至亲核试剂)在很大程度上由两个反应中心之间的距离(r)决定。r值相对较大的体系倾向于从水分子中夺取一个质子,而r值相对较小的体系更倾向于进行分子内反应,并且它们与水的相互作用仅通过氢键。此外,结果表明,根据门格尔的“时空假说”,分子内过程的有效摩尔浓度(logEM)与两个反应中心之间的距离(r)密切相关。

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