Nijegorodov N, Mabbs R, Downey W S
Physics Department, University of Botswana, Gaborone.
Spectrochim Acta A Mol Biomol Spectrosc. 2001 Nov;57(13):2673-85. doi: 10.1016/s1386-1425(01)00457-7.
Absorption. fluorescence and laser properties of perylene, benzo(ghi)perylene and coronene are studied experimentally (under the same conditions) and quantum chemically at room (293 K) and at low (77 and 4 K) temperatures and direct comparison is made between the results for each molecule. All the main absorption and fluorescence parameters such as oscillator strength, fe, quantum yield, gamma, decay time, tauf, fluorescence rate constant, kf (Einstein coefficient, A) and intersystem crossing rate constant, kST, are measured or calculated. The systems of singlet and triplet levels for these compounds are simulated and analyzed. Triplet states mixing with the lowest singlet S1 state are determined. The low values of kST found are explained. The possible vibronic coupling in the molecule coronene is discussed. The nature of the three fluorescence bands of coronene observed is interpreted. The change in the arrangement of the singlet and triplet levels of the studied compounds is interpreted quantum-chemically. It is found that at room temperature (293 K), only perylene shows laser action, while all three compounds show good laser oscillation at low temperature (< 100 K). The differences in the laser properties of these compounds are explained by the inversion of the Sp(1La) and Sinfinity(1Lb) levels which occurs in the transition from perylene to benzo(ghi)perylene. Chemical properties of the compounds studied are outlined. Linear and quasi-linear fluorescence spectra of perylene and benzo(ghi)perylene, obtained at 77 and 4 K. can be used in the identification of these compounds.
在室温(293K)和低温(77K和4K)条件下,对苝、苯并[ghi]苝和蔻的吸收、荧光及激光特性进行了实验研究(在相同条件下)和量子化学研究,并对每个分子的结果进行了直接比较。测量或计算了所有主要的吸收和荧光参数,如振子强度fe、量子产率γ、衰减时间tauf、荧光速率常数kf(爱因斯坦系数A)和系间窜越速率常数kST。对这些化合物的单重态和三重态能级系统进行了模拟和分析。确定了与最低单重态S1态混合的三重态。解释了所发现的kST的低值。讨论了蔻分子中可能的振动耦合。解释了观察到的蔻的三个荧光带的性质。用量子化学方法解释了所研究化合物单重态和三重态能级排列的变化。结果发现,在室温(293K)下,只有苝表现出激光作用,而在低温(<100K)下,所有三种化合物都表现出良好的激光振荡。这些化合物激光特性的差异是由从苝到苯并[ghi]苝转变过程中Sp(1La)和Sinfinity(1Lb)能级的反转所解释的。概述了所研究化合物的化学性质。在77K和4K下获得的苝和苯并[ghi]苝的线性和准线性荧光光谱可用于这些化合物的鉴定。