首页> 外文期刊>Journal of the American Chemical Society >Dynamic NMR study of the mechanisms of double, triple, and quadruple proton and deuteron transfer in cyclic hydrogen bonded solids of pyrazole derivatives
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Dynamic NMR study of the mechanisms of double, triple, and quadruple proton and deuteron transfer in cyclic hydrogen bonded solids of pyrazole derivatives

机译:动态NMR研究吡唑衍生物在环状氢键固体中双,三和四重质子和氘核的转移机理

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Using dynamic solid state N-15 CPMAS NMR spectroscopy (CP = cross polarization, MAS = magic angle spinning), the kinetics of the degenerate intermolecular double and quadruple proton and deuteron transfers in the cyclic dimer of N-15 labeled polycrystalline 3,5-diphenyl-4-bromopyrazole (DPBrP) and in the cyclic tetramer of N-15 labeled polycrystalline 3,5-diphenylpyrazole (DPP) have been studied in a wide temperature range at different deuterium fractions in the mobile proton sites. Rate constants were measured on a millisecond time scale by line shape analysis of the doubly N-15 labeled compounds, and by magnetization transfer experiments on a second timescale of the singly N-15 labeled compounds in order to minimize the effects of proton-driven N-15 spin diffusion. For DPBrP the multiple kinetic HH/HD/DD isotope effects could be directly obtained. By contrast, four rate constants k(1) to k(4) were obtained for DPP at different deuterium fractions. Whereas k(1) corresponds to the rate constant k(HHHH) of the HHHH isotopolog, an appropriate kinetic reaction model was needed for the kinetic assignment of the other rate constants. Using the model described by Limbach, H. H.; Klein, O.; Lopez Del Amo, J. M.; Elguero, J. Z Phys. Chem. 2004, 218, 17, a concerted quadruple proton-transfer mechanism as well as a stepwise consecutive single transfer mechanism could be excluded. By contrast, using the kinetic assignment k(2) approximate to k(3) approximate to k(HHHD) approximate to k(HDHD) and k(3) approximate to k(HDDD) approximate to k(DDDD), the results could be explained in terms of a two-step process involving a zwitterionic intermediate. In this mechanism, each reaction step involves the concerted transfer of two hydrons, giving rise to primary kinetic HH/HD/DD isotope effects, whereas the nontransferred hydrons only contribute small secondary effects, which are not resolved experimentally. By contrast, the multiple kinetic isotope effects of the double proton transfer in DPBrP and of the triple proton proton transfer in cyclic pyrazole trimers studied previously indicate concerted transfer processes. Thus, between n = 3 and 4 a switch of the reaction mechanism takes place. This switch is rationalized in terms of hydrogen bond compression effects associated with the multiple proton transfers. The Arrhenius curves of all processes are nonlinear and indicate tunneling processes at low temperatures. In a preliminary analysis, they are modeled in terms of the Bell-Limbach tunneling model.
机译:使用动态固态N-15 CPMAS NMR光谱(CP =交叉极化,MAS =幻角旋转),在N-15标记的多晶3,5-环状二聚体中简并分子间双,四质子和氘核转移的动力学。在较宽的温度范围内,在可移动质子位点的不同氘分数下,对二苯基-4-溴吡唑(DPBrP)和N-15标记的多晶3,5-二苯基吡唑(DPP)的环状四聚体进行了研究。通过对N-15双标记的化合物的线形分析,以及在单个N-15标记的化合物的第二时间刻度上的磁化传递实验,以毫秒为单位测量速率常数,以使质子驱动的N的影响最小化。 -15自旋扩散。对于DPBrP,可以直接获得多种动力学HH / HD / DD同位素效应。相反,在不同的氘分数下,DPP获得了四个速率常数k(1)至k(4)。尽管k(1)对应于HHHH同位素同位素的速率常数k(HHHH),但需要合适的动力学反应模型来对其他速率常数进行动力学分配。使用由Limbach,H.H。描述的模型。俄亥俄州克莱因; Lopez Del Amo,J.M .; Elguero,J.Z Phys。化学在2004、218、17中,可以排除协同的四重质子转移机制以及逐步的连续单转移机制。相比之下,使用动力学分配k(2)近似于k(3)近似于k(HHHD)近似于k(HDHD)和k(3)近似于k(HDDD)近似于k(DDDD),结果可以用涉及两性离子中间体的两步法来解释。在这种机制下,每个反应步骤都涉及两个水合子的协同转移,从而产生主要的动力学HH / HD / DD同位素效应,而未转移的水合仅产生较小的次级作用,而实验上无法解决。相比之下,先前研究的DPBrP中双质子转移和环状吡唑三聚体中三质子质子转移的多重动力学同位素效应表明转移过程是一致的。因此,在n = 3和4之间发生反应机理的转换。就与多次质子转移相关的氢键压缩效应而言,这种转换是合理的。所有过程的Arrhenius曲线都是非线性的,表示低温下的隧穿过程。在初步分析中,将根据Bell-Limbach隧道模型对它们进行建模。

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