首页> 外文期刊>The Journal of Chemical Physics >Fluorescence and ultraviolet absorption spectra and structure of coumaran and its ring-puckering potential energy function in the S-1(pi,pi(*)) excited state
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Fluorescence and ultraviolet absorption spectra and structure of coumaran and its ring-puckering potential energy function in the S-1(pi,pi(*)) excited state

机译:在S-1(pi,pi(*))激发态下香豆素的荧光和紫外吸收光谱,结构及其环折叠势能函数

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The fluorescence excitation (jet cooled), single vibrational level fluorescence, and the ultraviolet absorption spectra of coumaran associated with its S-1(pi,pi(*)) electronic excited state have been recorded and analyzed. The assignment of more than 70 transitions has allowed a detailed energy map of both the S-0 and S-1 states of the ring-puckering (nu(45)) vibration to be determined in the excited states of nine other vibrations, including the ring-flapping (nu(43)) and ring-twisting (nu(44)) vibrations. Despite some interaction with nu(43) and nu(44), a one-dimensional potential energy function for the ring puckering very nicely predicts the experimentally determined energy level spacings. In the S-1(pi,pi(*)) state coumaran is quasiplanar with a barrier to planarity of 34 cm(-1) and with energy minima at puckering angles of +/- 14 degrees. The corresponding ground state (S-0) values are 154 cm(-1) and +/- 25 degrees. As is the case with the related molecules indan, phthalan, and 1,3-benzodioxole, the angle strain in the five-membered ring increases upon the pi ->pi(*) transition within the benzene ring and this increases the rigidity of the attached ring. Theoretical calculations predict the expected increases of the carbon-carbon bond lengths of the benzene ring in S-1, and they predict a barrier of 21 cm(-1) for this state. The bond length increases at the bridgehead carbon-carbon bond upon electron excitation to the S-1(pi,pi(*)) state give rise to angle changes which result in greater angle strain and a nearly planar molecule. (c) 2006 American Institute of Physics.
机译:记录并分析了与Coumaran的S-1(pi,pi(*))电子激发态相关的荧光激发(射流冷却),单振动级荧光和紫外吸收光谱。分配了70个以上的跃迁,可以在其他9种振动的激发态下确定环皱褶(nu(45))振动的S-0和S-1状态的详细能量图。振铃(nu(43))和振铃(nu(44))振动。尽管与nu(43)和nu(44)进行了一些交互,但环皱褶的一维势能函数很好地预测了实验确定的能级间距。在S-1(pi,pi(*))状态下,coumaran是准平面的,具有34 cm(-1)的平面障碍,并且在+/- 14度的折角处具有最小的能量。相应的基态(S-0)值为154 cm(-1)和+/- 25度。与相关分子茚满,邻苯二甲酸和1,3-苯并二恶唑的情况一样,五元环中的角应变在苯环内的pi-> pi(*)跃迁时增加,从而增加了其刚性。附环。理论计算预测了S-1中苯环的碳-碳键长度的预期增加,并且对于该状态,他们预测了21 cm(-1)的势垒。当电子激发到S-1(pi,pi(*))状态时,桥头碳-碳键的键长增加,引起角度变化,从而导致更大的角度应变和接近平面的分子。 (c)2006年美国物理研究所。

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