Bell Thomas W, Choi Heung-Jin, Harte William, Drew Michael G B
Department of Chemistry, University of Nevada, Reno, Nevada 89557-0020, USA.
J Am Chem Soc. 2003 Oct 8;125(40):12196-210. doi: 10.1021/ja030236d.
The multistep syntheses of several bicyclic triamines are described, all of which have an imbedded 1,5,9-triazacyclododecane ring. In 1,5,9-triazabicyclo[7.3.3]pentadecanes 12, 13, 15, and 16, two nitrogens are bridged by three carbons. The monoprotonated forms of these triamines are highly stabilized by a hydrogen-bonded network involving the bridge and both bridgehead nitrogens, producing a difference of more than 8 pK(a) units in acidities of their monoprotonated and diprotonated forms. The one- and zero-carbon bridges in 1,5,9-triazabicyclo[9.1.1]tridecane (23) and 7-methyl-1,5,9-triazabicyclo[5.5.0]dodecane (39) do not enhance the stabilities of their monoprotonated forms. X-ray crystal structures and computational studies of 12.HI and 16.HI reveal similar, but somewhat weaker, hydrogen-bonded networks, relative to 15.HI. The activation free energies for conformational inversion of 13.HI (14.4 +/- 0.2 kcal/mol), 16.HI (15.0 +/- 0.1 kcal/mol) and 16 (8.8 +/- 0.3 kcal/mol) were measured by variable-temperature (1)H and (13)C NMR spectroscopy. These experimental barriers give an estimate of 6.2 kcal/mol for the strength of the bifurcated hydrogen bond between the bridge nitrogen and cavity proton in 16.HI. Computational studies support the hypothesis that N-inversion occurs in an open conformation, leading to an estimate of 10.32 kcal/mol for the enthalpy of the bifurcated hydrogen bond in 16.HI in the gas phase.
描述了几种双环三胺的多步合成方法,所有这些双环三胺都含有一个嵌入的1,5,9-三氮杂环十二烷环。在1,5,9-三氮杂双环[7.3.3]十五烷12、13、15和16中,两个氮原子被三个碳原子桥连。这些三胺的单质子化形式通过涉及桥连和两个桥头氮原子的氢键网络高度稳定,导致其一质子化形式和二质子化形式的酸度相差超过8个pK(a)单位。1,5,9-三氮杂双环[9.1.1]十三烷(23)和7-甲基-1,5,9-三氮杂双环[5.5.0]十二烷(39)中的一碳桥和零碳桥不会增强其单质子化形式的稳定性。12·HI和16·HI的X射线晶体结构和计算研究表明,相对于15·HI,存在相似但稍弱的氢键网络。通过变温(1)H和(13)C NMR光谱测量了13·HI(14.4±0.2 kcal/mol)、16·HI(15.0±0.1 kcal/mol)和16(8.8±0.3 kcal/mol)构象反转的活化自由能。这些实验能垒估计出16·HI中桥连氮原子和腔体质子之间分叉氢键的强度为6.2 kcal/mol。计算研究支持了N-反转在开放构象中发生的假设,从而估计出气相中16·HI分叉氢键的焓为10.32 kcal/mol。