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首页> 外文期刊>The Journal of Chemical Physics >Experimental and theoretical study of the electronic spectrum of the BAr2 complex: Transition to the excited valence B(2s2p(2) D-2) state
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Experimental and theoretical study of the electronic spectrum of the BAr2 complex: Transition to the excited valence B(2s2p(2) D-2) state

机译:BAr2配合物电子光谱的实验和理论研究:跃迁至激发价B(2s2p(2)D-2)状态

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The 2s2p(2) D-2 <-- 2s(2)2p P-2 valence transition in the BAr2 cluster is investigated in a collaborative experimental and theoretical study. Laser fluorescence excitation spectra of a supersonic expansion of B atoms entrained in Ar at high source backing pressures display several features not assignable to the BAr complex. Resonance fluorescence is not observed, but instead emission from the lower 3s state. Size-selected fluorescence depletion spectra show that these features in the excitation spectrum are primarily due to the BAr2 complex. This electronic transition within BAr2 is modeled theoretically, similarly to our earlier study of the 3s <-- 2p transition [M. H. Alexander , J. Chem. Phys. 106, 6320 (1997)]. The excited potential energy surfaces of the fivefold degenerate B(2s2p(2) D-2) state within the ternary complex are computed in a pairwise-additive model employing diatomic BAr potential energy curves which reproduce our previous experimental observations on the electronic states emanating from the B(D-2)+Ar asymptote. The simulated absorption spectrum reproduces reasonably well the observed fluorescence depletion spectrum. The theoretical model lends insight into the energetics of the approach of B to multiple Ar atoms, and how the orientation of B p-orbitals governs the stability of the complex. (C) 2000 American Institute of Physics. [S0021-9606(00)01210-1]. [References: 48]
机译:在合作实验和理论研究中,研究了BAr2簇中2s2p(2)D-2 <-2s(2)2p P-2价态跃迁。在高源背压下,氩气中夹带的B原子超音速膨胀的激光荧光激发光谱显示出无法分配给BAr配合物的几个特征。没有观察到共振荧光,而是从较低的3s状态发射。尺寸选择的荧光耗尽光谱表明,激发光谱中的这些特征主要归因于BAr2配合物。从理论上对BAr2中的这种电子跃迁建模,类似于我们之前对3s <-2p跃迁的研究[M. H.亚历山大,化学杂志。物理106,6320(1997)]。三元复合物中五重简并B(2s2p(2)D-2)态的激发势能面是在双加成模型中使用双原子BAr势能曲线计算的,该曲线重现了我们先前对由电子产生的电子态的实验观察结果B(D-2)+ Ar渐近线。模拟的吸收光谱可以很好地再现观察到的荧光耗尽光谱。该理论模型使人们深入了解了B到达多个Ar原子的方法的能量学,以及B p轨道的取向如何控制该配合物的稳定性。 (C)2000美国物理研究所。 [S0021-9606(00)01210-1]。 [参考:48]

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