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首页> 外文期刊>Journal of the American Chemical Society >HYDROGEN DEUTERIUM ISOTOPE EFFECTS ON THE NMR CHEMICAL SHIFTS AND GEOMETRIES OF INTERMOLECULAR LOW-BARRIER HYDROGEN-BONDED COMPLEXES
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HYDROGEN DEUTERIUM ISOTOPE EFFECTS ON THE NMR CHEMICAL SHIFTS AND GEOMETRIES OF INTERMOLECULAR LOW-BARRIER HYDROGEN-BONDED COMPLEXES

机译:氢氘同位素对分子间低阻态氢键配合物的NMR化学位移和几何形状的影响

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In this paper we describe H/D isotope effects on the chemical shifts of intermolecular hydrogen-bonded complexes exhibiting low barriers for proton transfer, as a function of the position of the hydrogen bond proton. For this purpose, low-temperature (100-150 K) H-1, H-2, and N-15 NMR experiments were performed on solutions of various protonated and deuterated acids AL (L = H, D) and pyridine-N-15 (B) dissolved in a 2:1 mixture of CDClF2/CDF3. In this temperature range, the regime of slow proton and hydrogen bond exchange is reached, leading to resolved NMR lines for each hydrogen-bonded species as well as for different isotopic modifications. The experiments reveal the formation of 1:1, 2:1, and 3:1 complexes between AH(D) and B. The heteronuclear scalar H-1-N-15 coupling constants between the hydrogen bond proton and the N-15 nucleus of pyridine show that the proton is gradually shifted from the acid to pyridine-N-15 when the proton-donating power of the acid is increased. H/D isotope effects on the chemical shifts of the hydrogen-bonded hydrons (proton and deuteron) as well as on the N-15 nuclei involved in the hydrogen bonds were measured for 1:1 and 2:1 complexes. A qualitative explanation concerning the origin of these low-barrier hydrogen bond isotope effects is proposed, from which interesting information concerning the hydron and heavy atom locations in single and coupled low-barrier hydrogen bonds can be derived, Several implications concerning the role of low-barrier hydrogen bonds in enzyme reactions are discussed.
机译:在本文中,我们描述了氢/氢同位素对分子间氢键复合物的化学位移的影响,该分子间质子转移的势垒较低,是氢键质子位置的函数。为此,对各种质子化和氘代酸AL(L = H,D)和吡啶-N-的溶液进行了低温(100-150 K)H-1,H-2和N-15 NMR实验将15(B)溶于CDClF2 / CDF3的2∶1混合物中。在此温度范围内,达到了质子和氢键交换缓慢的状态,从而导致了每个氢键键合物种以及不同同位素修饰的NMR谱线解析。实验揭示了AH(D)与B之间形成1:1、2:1和3:1配合物。氢键质子与N-15核之间的异核标量H-1-N-15耦合常数吡啶的质谱表明,当酸的质子给体能力增加时,质子从酸逐渐转移到吡啶-N-15上。测量了1:1和2:1配合物对氢键合氢原子(质子和氘核)的化学位移以及参与氢键的N-15核的H / D同位素的影响。提出了有关这些低能级氢键同位素效应起源的定性解释,从中可以得出有关单个和偶合低能级氢键中氢原子和重原子位置的有趣信息。讨论了酶反应中的势垒氢键。

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