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Correlation between the rate order and the number of molecules in the reaction of trimethyl phosphite with water in acetonitrile solvent

机译:亚磷酸三甲酯与水在乙腈溶剂中反应的速率阶数与分子数的相关性

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摘要

Density functional theory calculations of the title reaction, P(OCH _3)_3 + (H_2O)_n in CH_3CN, were conducted, where n is the number of water molecules. Two routes, the routes suggested by (A) Aksnes and (B) Arbuzov, were traced with various n values. Both routes consist of two transition states (TSs) and one intermediate. Route B was found to be more likely than route A. In the former, the activation free energy (ΔG~?) of n = 3 is slightly smaller than that of n = 2. The n = 3 TS geometry is composed of a nucleophile H_2O, a proton donor H_2O, and an auxiliary one. Indeed, the geometry appears to be plausible for ready proton relays along hydrogen bonds, but it is inconsistent with the observed third-order rate constant. Catalytic water molecules were added to the n = 2 and 3 bond-interchange circuits. Then route B with n = 2 + 2 was found to be best. By n = 2 + 10 and n = 3 + 12 models, the n = 2 based route B was confirmed to be likely.
机译:进行了CH_3CN中标题反应P(OCH _3)_3 +(H_2O)_n的密度泛函理论计算,其中n为水分子数。跟踪了两条路线,分别是(A)Aksnes和(B)Arbuzov建议的路线,并带有不同的n值。两条路径都包含两个过渡状态(TS)和一个中间状态。发现路线B比路线A更可能。在前者中,n = 3的活化自由能(ΔG〜?)略小于n = 2的活化自由能。n= 3 TS几何形状由亲核试剂组成H_2O,质子供体H_2O和辅助分子。确实,对于氢键附近的质子接力来说,这种几何形状似乎是合理的,但是与观察到的三阶速率常数不一致。将催化水分子添加到n = 2和3键交换电路中。然后发现n = 2 + 2的路线B最好。通过n = 2 + 10和n = 3 + 12个模型,可以确定基于n = 2的路线B。

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