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Ab initio molecular orbital theory: a tool for THz spectroscopic investigation

机译:AB Initio分子轨道理论:一种用于ZZ光谱调查的工具

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Terahertz spectroscopy, which investigates the electromagnetic spectrum of samples between 0.1 and 10 THz, allows not only for exploration of molecular structures but also of molecular dynamics. One difficulty in performing THz spectroscopy is that the data can be noisy and difficult to interpret. Ab initio molecular modelling has recently become more and more useful in the prediction of, for example, molecular structures, dynamic states and isomeric forms. Since the structure of biomolecules is closely related to their functionality there are broad ranging applications in biomedicine, for example in DNA sensing. An a priori knowledge of the expected THz spectra allows for improved experimentation. There is a growing and recognised need for THz spectroscopic databases to be created and made available along with classifiers that are able to effectively detect a specific substance. We show, for a specific example, the 9-cis and all-trans retinal isomers, how ab initio molecular orbital calculations and quantum chemical modelling programs, such as Gamess, can aid in this endeavour.
机译:考赫兹光谱研究,其研究了0.1至10至10至10Vz之间的样品的电磁谱,不仅允许探索分子结构,而且允许分子动态。执行THz光谱学的一个难度是数据可以是嘈杂的并且难以解释。 AB Initio分子建模最近在预测例如分子结构,动态状态和异构形式的预测中变得越来越有用。由于生物分子的结构与其功能密切相关,因此生物医学中存在广泛的测距应用,例如在DNA感测中。对预期的THz光谱的先验知识允许改进的实验。尚未产生和认可的THz光谱数据库的需求,并可与能够有效检测特定物质的分类器一起提供。我们展示了9-CIS和全反式视网膜异构体,AB初始分子轨道计算和量子化学建模计划,如Gamess,可以帮助这种努力。

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