首页> 外文会议>Conference on Laser Processing of Advanced Materials and Laser Microtechnologies Jun 22-27, 2002 Moscow, Russia >Excited singlet and triplet states and of the new photoionization electron-vibrational mechanism in the laser-active molecules
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Excited singlet and triplet states and of the new photoionization electron-vibrational mechanism in the laser-active molecules

机译:激发分子中的激发单重态和三重态以及新的光电离电子振动机理

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Physical principles of the simulating of structure, spectral-luminescence, and losing properties of complex N, O, S heteroaromatic molecules by means of the quantum-chemical one-electron approximation models LCAO-MO SCF CI CNDO/S and INDO/S (complete and intermediate neglect of differential overlap, sp-valence basis), PPP/S (Pariser- Parr-Pople σπ~* - approximation) approaches are considered. The principles of control of the molecular structure; the properties of the excited singlet (S_i~*) and triplet (T_i) states; and the parameters of the S_1~* → S_0, S_0 → S_n~*, S_1~* → S_n~*, T_1 → T_n and T_1 → S_0 transitions aimed at the selection of organic luminophores and UV-laser-active molecules with preset properties for specific scientific and technical applications are demonstrated. In LCAO-MO CSF CI methods, the wave function of the quantum systems contains the information on each atom and spectral parameters of atoms. The ionization potential and the electron affinity are taken from the gas-phase experiments. A complex multiatomic molecule can be represented as a system of excited electronic states with different spin and orbital structures where the. energy of a quantum evolves under the action of intramolecular mechanisms with determine photophysical and photochemical properties of organic molecules.
机译:通过量子化学单电子逼近模型LCAO-MO SCF CI CNDO / S和INDO / S模拟复杂N,O,S杂芳族分子的结构,光谱发光和损失性质的物理原理以及忽略中间的差分重叠,sp价基),PPP / S(Pariser-Parr-Popleσπ〜*-近似)方法。控制分子结构的原理;激发单重态(S_i〜*)和三重态(T_i)状态的性质; S_1〜*→S_0,S_0→S_n〜*,S_1〜*→S_n〜*,T_1→T_n和T_1→S_0过渡的参数旨在选择具有预设特性的有机发光体和紫外线激光活性分子针对特定的科学技术应用进行了演示。在LCAO-MO CSF CI方法中,量子系统的波函​​数包含有关每个原子的信息以及原子的光谱参数。电离势和电子亲和力取自气相实验。复杂的多原子分子可以表示为具有不同自旋和轨道结构的激发电子态系统。量子能量在分子内机制的作用下演化,并决定有机分子的光物理和光化学性质。

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