Barone Vincenzo, Brustolon Marina, Cimino Paola, Polimeno Antonino, Zerbetto Mirco, Zoleo Alfonso
Dipartimento di Chimica and INSTM, Università di Napoli Federico II, Complesso Universitario di Monte Sant'Angelo Via Cintia, I-80126 Napoli, Italy.
J Am Chem Soc. 2006 Dec 13;128(49):15865-73. doi: 10.1021/ja065475q.
In this work we address the interpretation, via an ab initio integrated computational approach, of continuous wave electron spin resonance (cw-ESR) spectra of p-(methylthio)phenyl nitronylnitroxide (MTPNN) dissolved in toluene. Our approach is based on the determination of the spin Hamiltonian, averaged with respect to fast vibrational motions, with magnetic tensor parameters (Zeeman and hyperfine tensors) characterized by quantum mechanical density functional calculations. The system is then described by a stochastic Liouville equation, with inclusion of diffusive rotational dynamics. Parametrization of diffusion rotational tensor is provided by a hydrodynamic model. Cw-ESR spectra of MTPNN are simulated for a wide range of temperatures (155-292 K) with minimal resorting to fitting procedures, proving that the combination of sensitive ESR spectroscopy and sophisticated modeling can be highly helpful in providing structural and dynamic information on molecular systems.
在这项工作中,我们通过从头算综合计算方法,对溶解在甲苯中的对(甲硫基)苯基硝酮硝酰自由基(MTPNN)的连续波电子自旋共振(cw-ESR)光谱进行解释。我们的方法基于自旋哈密顿量的确定,该哈密顿量是相对于快速振动运动进行平均的,其磁张量参数(塞曼张量和超精细张量)通过量子力学密度泛函计算来表征。然后,通过包含扩散旋转动力学的随机刘维尔方程来描述该系统。扩散旋转张量的参数化由流体动力学模型提供。在很宽的温度范围(155 - 292 K)内,对MTPNN的cw-ESR光谱进行了模拟,且极少借助拟合程序,证明了灵敏的ESR光谱学与精密建模相结合,在提供分子系统的结构和动力学信息方面会非常有帮助。