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Free Energy Map for the Co-Oligomerization of Formaldehyde and Ammonia

机译:甲醛和氨共聚的自由能图

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摘要

Density functional theory calculations, including PoissonBoltzmann implicit solvent and free energy corrections, are applied to construct a free energy map of formaldehyde and ammonia co-oligomerization in aqueous solution at pH 7. The stepwise route to forming hexamethylenetetramine (HMTA), the one clearly identified major product in a complex mixture, involves a series of addition reactions of formaldehyde and ammonia coupled with dehydration and cyclization reactions at key steps in the pathway. The free energy map also allows us to propose the possible identity of some major peaks observed by mass spectroscopy in the reaction mixture being the result of stable species not along the pathway to HMTA, in particular those formed by intramolecular condensation of hydroxyl groups to form six-membered rings with ether linkages. Our study complements a baseline free energy map previously worked out for the self-oligomerization of formaldehyde in solution at pH 7 using the same computational protocol and published in this journal (J. Phys. Chem. A 2013, 117, 12658).
机译:密度泛函理论计算(包括PoissonBoltzmann隐式溶剂和自由能校正)被用于构建pH值为7的水溶液中甲醛和氨共聚的自由能图。逐步形成六亚甲基四胺(HMTA)的方法复杂混合物中的主要产物涉及一系列甲醛和氨的加成反应,以及该途径关键步骤中的脱水和环化反应。自由能图还允许我们提出反应混合物中通过质谱观察到的一些主要峰的可能身份,这是由于稳定物质不在沿HMTA的途径中产生的,尤其是由分子内羟基缩合形成六个醚键的三元环。我们的研究是对基线自由能图的补充,该基线先前已使用相同的计算方案针对pH为7的溶液中甲醛的自齐聚进行了计算,并已发表在该杂志上(J. Phys。Chem。A 2013,117,12658)。

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