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首页> 外文期刊>The Journal of Chemical Physics >Theoretical investigation of a novel xylene-based light-driven unidirectional molecular motor
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Theoretical investigation of a novel xylene-based light-driven unidirectional molecular motor

机译:基于二甲苯的光驱动单向分子电机的理论研究

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In this study, the working mechanism of the first light-driven rotary molecular motors used to control an eight-base-pair DNA hairpin has been investigated. In particular, this linker was reported to have promising photophysical properties under physiological conditions, which motivated our work at the quantum mechanical level. Cis-trans isomerization is triggered by photon absorption at wavelengths ranging 300 nm-400 nm, promoting the rotor to the first excited state, and it is mediated by an energy-accessible conical intersection from which the ground state is reached back. The interconversion between the resulting unstable isomer and its stable form occurs at physiological conditions in the ground state and is thermally activated. Here, we compare three theoretical frameworks, generally used in the quantum description of medium-size chemical systems: Linear-Response Time-Dependent Density Functional Theory (LR-TDDFT), Spin-Flip TDDFT (SF-TDDFT), and multistate complete active space second-order perturbation theory on state-averaged complete active space self consistent field wavefunctions (MS-CASPT2//SA-CASSCF). In particular, we show the importance of resorting to a multireference approach to study the rotational cycle of light-driven molecular motors due to the occurrence of geometries described by several configurations. We also assess the accuracy and computational cost of the SF-TDDFT method when compared to MS-CASPT2 and LR-TDDFT.
机译:在本研究中,研究了第一台用于控制八碱基对DNA发夹的光驱动旋转分子马达的工作机理。特别是,据报道,这种连接体在生理条件下具有很好的光物理性质,这激发了我们在量子力学水平上的工作。顺反异构化是由波长在300 nm-400 nm之间的光子吸收触发的,将转子提升到第一激发态,并由一个能量可及的圆锥交叉点介导,从该交叉点返回基态。由此产生的不稳定异构体与其稳定形式之间的相互转换发生在基态的生理条件下,并被热激活。在这里,我们比较了三种常用于中等规模化学系统量子描述的理论框架:线性响应时间相关密度泛函理论(LR-TDDFT)、自旋翻转密度泛函理论(SF-TDDFT)和基于状态平均完全活跃空间自洽场波函数(MS-CASPT2//SA-CASSCF)的多状态完全活跃空间二阶微扰理论。特别是,我们展示了采用多参考方法研究光驱动分子马达的旋转循环的重要性,这是由于出现了几种构型描述的几何结构。与MS-CASPT2和LR-TDDFT相比,我们还评估了SF-TDDFT方法的准确性和计算成本。

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