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Inelastic neutron scattering study of methyl groups rotation in some methylxanthines

机译:非弹性中子散射研究某些甲基黄嘌呤中甲基的旋转

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The three isomeric dimethylxanthines and trimethylxanthine are studied by neutron spectroscopy up to energy transfers of 100 meV at energy resolutions ranging from 0.7 mu eV to some meV.The loss of elastic intensity with increasing temperature can be modeled by quasielastic methyl rotation.The number of inequivalent methyl groups is in agreement with those of the room temperature crystal structures.Activation energies are obtained.In the case of theophylline,a doublet tunneling band is observed at 15.1 and 17.5 mu eV.In theobromine,a single tunneling band at 0.3 mu eV is found.Orientational disorder in caffeine leads to a 2.7 mu eV broad distribution of tunneling bands around the elastic line.At the same time,broad low energy phonon spectra characterize an orientational glassy state with weak methyl rotational potentials.Librational energies of the dimethylxanthines are clearly seen in the phonon densities of states.Rotational potentials can be derived which explain consistently all observables.While their symmetry in general is threefold,theophylline shows a close to sixfold potential reflecting a mirror symmetry.
机译:用中子光谱法研究了三种异构体二甲基黄嘌呤和三甲基黄嘌呤,在能量分辨为0.7μeV至一些meV的情况下,直至100 meV的能量转移。可通过准弹性甲基旋转来模拟随着温度升高的弹性强度损失。甲基与室温晶体结构一致。获得活化能。在茶碱的情况下,在15.1和17.5 mu eV处观察到双峰隧穿带。在可可碱中,在0.3 mu eV处有一个隧穿带为。咖啡因的方向性紊乱导致弹性线周围的隧穿带宽2.7μeV分布。同时,宽广的低能声子光谱表征了具有弱甲基旋转势的方向性玻璃态。二甲基黄嘌呤的库仑能量很明显在状态的声子密度中可以看到。虽然它们的对称性通常是三倍,但茶碱显示出接近六倍的电位,反映出镜像对称性。

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