Lopez Juan Miguel, Männle Ferdinand, Wawer Iwona, Buntkowsky Gerd, Limbach Hans-Heinrich
Institut für Chemie und Biochemie der Freien Universität Berlin, Takustrasse 3, D-14195, Berlin.
Phys Chem Chem Phys. 2007 Aug 28;9(32):4498-513. doi: 10.1039/b704384h. Epub 2007 Jun 25.
Using dynamic NMR spectroscopy, the kinetics of the degenerate double proton transfer in cyclic dimers of polycrystalline (15)N,(15)N'-di-(4-bromophenyl)-formamidine (DBrFA) have been studied including the kinetic HH/HD/DD isotope effects in a wide temperature range. This transfer is controlled by intermolecular interactions, which in turn are controlled by the molecular conformation and hence the molecular structure. At low temperatures, rate constants were determined by line shape analysis of (15)N NMR spectra obtained using cross-polarization (CP) and magic angle spinning (MAS). At higher temperatures, in the microsecond time scale, rate constants and kinetic isotope effects were obtained by a combination of longitudinal (15)N and (2)H relaxation measurements. (15)N CPMAS line shape analysis was also employed to study the non-degenerate double proton transfer of polycrystalline (15)N,(15)N'-diphenyl-formamidine (DPFA). The kinetic results are in excellent agreement with the kinetics of DPFA and (15)N,(15)N'-di-(4-fluorophenyl)-formamidine (DFFA) studied previously for solutions in tetrahydrofuran. Two large HH/HD and HD/DD isotope effects are observed in the whole temperature range which indicates a concerted double proton transfer mechanism in the domain of the reaction energy surface. The Arrhenius curves are non-linear indicating a tunneling mechanism. Arrhenius curve simulations were performed using the Bell-Limbach tunneling model. The role of the phenyl group conformation and hydrogen bond compression on the barrier of the proton transfer is discussed.
利用动态核磁共振光谱,研究了多晶(15)N,(15)N'-二 - (4 - 溴苯基) - 甲脒(DBrFA)环状二聚体中简并双质子转移的动力学,包括在很宽温度范围内的动力学HH/HD/DD同位素效应。这种转移受分子间相互作用控制,而分子间相互作用又受分子构象进而受分子结构控制。在低温下,通过对使用交叉极化(CP)和魔角旋转(MAS)获得的(15)N NMR谱线形状分析来确定速率常数。在较高温度下,在微秒时间尺度上,通过纵向(15)N和(2)H弛豫测量相结合来获得速率常数和动力学同位素效应。(15)N CPMAS谱线形状分析也用于研究多晶(15)N,(15)N'-二苯基 - 甲脒(DPFA)的非简并双质子转移。动力学结果与先前对四氢呋喃溶液中研究的DPFA和(15)N,(15)N'-二 - (4 - 氟苯基) - 甲脒(DFFA)的动力学结果非常吻合。在整个温度范围内观察到两个大的HH/HD和HD/DD同位素效应,这表明在反应能量表面区域存在协同双质子转移机制。阿仑尼乌斯曲线是非线性的,表明存在隧穿机制。使用贝尔 - 林巴赫隧穿模型进行了阿仑尼乌斯曲线模拟。讨论了苯基构象和氢键压缩对质子转移势垒的作用。