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首页> 外文期刊>The Journal of Chemical Physics >ND4+ and NH3D+ dynamics in ammonium persulphate. II. Transition from low-to-high-temperature regime
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ND4+ and NH3D+ dynamics in ammonium persulphate. II. Transition from low-to-high-temperature regime

机译:过硫酸铵中ND4 +和NH3D +的动力学。二。从低温状态过渡到高温状态

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The transition of the dynamics of ND4+ ions in ammonium persulphate, dominated at low temperatures by coherent uniaxial rotational tunnelling about one specific N-D bond (the preferred bond) and, at high temperatures, by frequent stochastic jumps about all N-D bonds is elucidated with deuteron spin-lattice relaxation measurements, selective saturation experiments and deuteron NMR line shape analyses. Between 20 and 35 K, the coherent uniaxial tunnelling is superseded by thermally activated stochastic jumps about the same bond with kinetic parameters k(dyn)(0)=10((11.5+/-0.5)) s(-1) and E-dyn(a)=(3.6+/-0.3) kJ/mol. At higher temperatures, thermally activated stochastic jumps about the other N-D bonds set in. Their kinetic parameters are k(st)(0)=10((12.2+/-0.5)) s(-1) and E-st(a)=(7.8+/-0.5) kJ/mol. From the primary and secondary tunnelling observed at low temperatures we infer the heights of the potentials which hinder rotations of the ND4+ ions about the preferred and any other N-D bond. These heights, minus the rotator's ground state energy, are about 25% larger than, respectively, E-dyn(a) and E-st(a). The kinetic parameters of the two stochastic processes are such that the essentially uniaxial coherent and then incoherent dynamics at low temperatures is superseded at the decomposition temperature of the compound by stochastic reorientational jumps which reflect the basic tetrahedral symmetry of the ammonium ion. (C) 2002 American Institute of Physics. [References: 22]
机译:氘化自旋能阐明过硫酸铵中ND4 +离子的动力学转变,在低温下,其围绕一个特定的ND键(优选键)的相干单轴旋转隧穿,而在高温下,由于所有ND键的频繁随机跃迁而占优势。晶格弛豫测量,选择性饱和实验和氘核NMR线形分析。在20至35 K之间,相干单轴隧穿被动力学参数为k(dyn)(0)= 10((11.5 +/- 0.5))s(-1)和E-的相同键的热激活随机跃迁所取代。 dyn(a)=(3.6 +/- 0.3)kJ / mol。在更高的温度下,其他ND键的热活化随机跃迁。其动力学参数为k(st)(0)= 10((12.2 +/- 0.5))s(-1)和E-st(a) =(7.8 +/- 0.5)kJ / mol。从在低温下观察到的初级和次级隧穿,我们推断出阻碍ND4 +离子围绕优选键和任何其他N-D键旋转的电势高度。这些高度减去转子的基态能量分别比E-dyn(a)和E-st(a)大25%。两种随机过程的动力学参数是这样的:在低温下,化合物的分解温度下,基本单轴的相干动力学然后是非相干动力学在化合物的分解温度下被反映了铵离子基本四面体对称性的随机方向性跃迁所取代。 (C)2002美国物理研究所。 [参考:22]

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