Department of Chemistry, University of Tsukuba, Tsukuba 305-8571, Japan.
Phys Chem Chem Phys. 2012 Sep 21;14(35):12347-54. doi: 10.1039/c2cp41241a. Epub 2012 Aug 8.
The temperature dependence of (35)Cl NQR frequencies and the spin-lattice relaxation times T(1) has been measured in the wide temperature range of 4.2-420 K for morpholinium hydrogen chloranilate in which a one-dimensional O-HO hydrogen-bonded molecular chain of hydrogen chloranilate ions is formed. An anomalous temperature dependence of the NQR frequencies was analyzed to deduce a drastic temperature variation of the electronic state of the hydrogen-bonded molecular chain. The hydrogen atom distribution in the OHO hydrogen bond is discussed from the results of NQR as well as multi-temperature X-ray diffraction. Above ca. 330 K, the T(1) showed a steep decrease with an activation energy of ca. 70 kJ mol(-1) and with an isotope ratio (37)Cl T(1)/(35)Cl T(1) = 0.97 ± 0.2. The orientational change of the z axis of electric field gradient tensor in conjunction with the hydrogen transfer between adjacent hydrogen chloranilate ions is suggested as a possible relaxation mechanism.
在 4.2-420 K 的宽温度范围内,测量了 35Cl NQR 频率和自旋晶格弛豫时间 T(1)对吗啉盐酸氯酸盐的依赖性,其中形成了一维 O-HO 氢键的盐酸氯酸盐离子分子链。对 NQR 频率的异常温度依赖性进行了分析,以推断氢键分子链的电子态的剧烈温度变化。从 NQR 以及多温度 X 射线衍射的结果讨论了 OHO 氢键中的氢原子分布。在约 330 K 以上,T(1)随活化能约 70 kJ mol(-1)和同位素比 (37)Cl T(1)/(35)Cl T(1)=0.97±0.2 急剧下降。建议电场梯度张量 z 轴的取向变化以及相邻盐酸氯酸盐离子之间的氢转移是可能的弛豫机制。