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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Time-dependent density functional theory studies of the photoswitching of the two-photon absorption spectra in stilbene, metacyclophenadiene, and diarylethene chromophores
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Time-dependent density functional theory studies of the photoswitching of the two-photon absorption spectra in stilbene, metacyclophenadiene, and diarylethene chromophores

机译:随时间变化的密度泛函理论研究二苯乙烯,间环菲二烯和二芳基乙烯发色团中双光子吸收光谱的光转换

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摘要

Photochromophores such as cis-stilbene (1a), metacyclophenadiene (2a), and the diarylethene 3a undergo photoinduced conrotatory opening and closing of a central bond and are currently being sought out as potential candidates for media within 3D optical information storage devices. Strong molecular two-photon absorption (inducing the reversible photoisomerization) is a necessary feature for this application due to the need for high 3D spatial resolution. Here, the one- and two-photon absorption (OPA and TPA) characteristics of the open- and closed-ring isomers of 1-3 have been investigated using time-dependent density functional theory. It was determined that the excited states populated by two-photon absorption were nearly 1 eV higher in energy than the lowest energy excited state populated by one-photon absorption. The electronic structures of the TPA and OPA accessed states were then compared utilizing natural transition orbital analysis. There, it was found that states excited by OPA had pi pi* character about the C-C framework associated with the bond formation/scission of the central C-C bond. In contrast, the states populated by TPA have pi pi* character along the C-C skeletal periphery, including phenyl excitations. It is postulated that these differences in excited state electronic structure may lead to reaction pathways alternative to photoisomerization about the central C-C bond, impacting the utility of these compounds as 3D information storage media.
机译:诸如顺二苯乙烯(1a),间环苯二烯(2a)和二芳基乙烯3a之类的光致变色团经历光诱导的中心键的旋转打开和闭合,并且目前正在寻找作为3D光学信息存储设备中介质的潜在候选物。由于需要高3D空间分辨率,因此强烈的分子双光子吸收(诱导可逆的光异构化)是此应用程序的必要功能。在这里,使用时变密度泛函理论研究了1-3的开环和闭环异构体的单光子吸收和双光子吸收(OPA和TPA)特性。已确定,由双光子吸收构成的激发态的能量比由单光子吸收构成的最低能量的激发态高近1 eV。然后利用自然跃迁轨道分析比较TPA和OPA进入状态的电子结构。在那里,发现由OPA激发的状态具有与中心C-C键的键形成/断裂相关的C-C骨架的pi pi *特征。相反,TPA构成的状态沿C-C骨架外围具有pi pi *特征,包括苯基激发。据推测,激发态电子结构的这些差异可能导致围绕中心C-C键的光异构化的替代反应途径,影响了这些化合物作为3D信息存储介质的效用。

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