首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Temperature study of a glycine radical in the solid state adopting a DFT periodic approach: Vibrational analysis and comparison with EPR experiments
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Temperature study of a glycine radical in the solid state adopting a DFT periodic approach: Vibrational analysis and comparison with EPR experiments

机译:DFT周期性方法对固态甘氨酸自由基的温度研究:振动分析和EPR实验的比较

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摘要

The major radiation-induced radical in crystalline glycine is examined using DFT calculations, in which both molecular environment and temperature are accounted for. This is achieved by molecular dynamics simulations of the radical embedded in a supercell under periodic boundary conditions. At 100 and 300 K, a vibrational analysis is performed based on Fourier transformation of the atomic velocity autocorrelation functions. By the use of a novel band-pass filtering approach, several vibrational modes are identified and associated with experimental infrared and Raman assignments. Decomposition of the calculated spectra in terms of radical motion reveals that several vibrational modes are unique to the radical, the most prominent one at 702 cm(-1) corresponding to out-of-plane motion of the paramagnetic center, inversely coupled with similar motion of the carboxyl carbon. A hybrid periodic/cluster scheme is used to evaluate the EPR properties of the glycine radical along the MD trajectories resulting in temperature dependent magnetic properties. These are compared with available experimental data conducted at 77 K and room temperature. Ground state or low temperature calculations yield very good agreement with 77 K experimental EPR properties. From the 300 K simulations, an important improvement is achieved on the isotropic hyperfine coupling of the C-13 tensor, which becomes closer to the value measured at room temperature. It is established that this is the result of a nonlinear relation between the planarity of the radical center and the isotropic couplings of the nuclei bound to it. Finally, a critical reevaluation of the experimental N-14 hyperfine tensor data strongly suggests that an erroneous tensor was reported in literature. It is convincingly shown that from the same experimental data set a different tensor can be derived, which is in substantially better agreement with all calculations.
机译:使用DFT计算检查了晶体甘氨酸中主要的辐射诱导基团,其中考虑了分子环境和温度。这是通过在周期性边界条件下对嵌入超级电池中的自由基进行分子动力学模拟来实现的。在100和300 K时,基于原子速度自相关函数的傅立叶变换执行振动分析。通过使用新颖的带通滤波方法,可以识别几种振动模式,并将其与实验性红外和拉曼光谱分配相关联。根据自由基运动对计算光谱的分解显示,自由基有几种振动模式是独特的,在702 cm(-1)处最突出的一种振动模式对应于顺磁中心的平面外运动,并与相似运动反向耦合的羧基碳。混合周期/簇方案用于评估沿MD轨迹产生的甘氨酸自由基的EPR特性,从而导致温度依赖性的磁性。将这些与在77 K和室温下进行的可用实验数据进行比较。基态或低温计算得出的结果与77 K实验EPR特性非常吻合。通过300 K模拟,对C-13张量的各向同性超精细耦合实现了重要的改进,该耦合变得更接近于室温下测得的值。可以确定,这是自由基中心的平面性与与其结合的原子核的各向同性耦合之间非线性关系的结果。最后,对实验性N-14超精细张量数据的严格重新评估强烈表明,文献中报告了错误的张量。令人信服地表明,可以从相同的实验数据集中得出不同的张量,该张量与所有计算都具有更好的一致性。

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