Department of Chemistry, 1-014 Center for Science & Technology, Syracuse University, Syracuse, NY, 13244-4100, USA.
Syracuse University & Department of Chemistry, Iowa State University, 1605 Gilman Hall, Ames, IA, 50011-3111, USA.
Angew Chem Int Ed Engl. 2016 Jan 22;55(4):1309-12. doi: 10.1002/anie.201508078. Epub 2015 Dec 14.
The thermodynamically stable enol crystal form of barbituric acid, previously prepared as powder by grinding or slurry methods, has been obtained as single crystals by slow cooling from methanol solution. The selection of the enol crystal was facilitated by a density-gradient method. The structure at 224 and 95 K confirms the enol inferred on the basis of powder data. The enol has bond lengths that are consistent with the expected bond order and with DFT calculations that include treatment of hydrogen bonding. In isolation, the enol is higher in energy than the tri-keto form by 50 kJ mol(-1) which must be more than compensated by enhanced hydrogen bonding. Both crystal forms have four normal H-bonds; the enol has two additional H-bonds with O-O distances of 2.49 Å. Conversion into the enol form occurs spontaneously in the solid state upon prolonged storage of the commercial tri-keto material. Slurry conversion of tri-one to enol in ethanol is reversed in direction in ethanol-D1.
巴比妥酸的热稳定烯醇晶体形式以前通过研磨或浆料方法制备为粉末,现已通过从甲醇溶液缓慢冷却获得单晶。通过密度梯度法促进了烯醇晶体的选择。在 224 和 95 K 下的结构证实了基于粉末数据推断的烯醇。烯醇的键长与预期的键级一致,并且与包括氢键处理的 DFT 计算一致。孤立状态下,烯醇的能量比三酮形式高 50 kJ/mol,这必须通过增强氢键得到充分补偿。两种晶体形式都有四个正常的 H 键;烯醇还有另外两个 H 键,O-O 距离为 2.49 Å。在商业三酮材料长时间储存过程中,固态中的烯醇形式会自发转化。在乙醇-D1 中,三酮在乙醇中的浆状转化向相反方向进行。