Department of Chemistry, University of Kentucky, Lexington, Kentucky 40506-0055, USA.
J Chem Phys. 2011 Dec 7;135(21):214307. doi: 10.1063/1.3664903.
The previously unknown electronic spectrum of the H(2)PO free radical has been identified in the 407-337 nm region using a combination of laser-induced fluorescence and single vibronic level emission spectroscopy. High level ab initio predictions of the properties of the ground and first two excited doublet states were used to identify the spectral region in which to search for the electronic transition and were used to aid in the analysis of the data. The band system is assigned as the B̃(2)A(')-X̃(2)A(') electronic transition which involves promotion of an electron from the π to the π∗ molecular orbital. The excited state r(0) molecular structure was determined by rotational analysis of high resolution LIF spectra to be r(PO) = 1.6710(2) Å, r(PH) = 1.4280(6) Å, θ(HPO) = 105.68(7)°, θ(HPH) = 93.3(2)°, and the out-of-plane angle = 66.8(2)°. The structural changes on electronic excitation, which include substantial increases in the PO bond length and out-of-plane angle, are as expected based on molecular orbital theory and our previous studies of the isoelectronic H(2)AsO, Cl(2)PS, and F(2)PS free radicals.
使用激光诱导荧光和单振子能级发射光谱相结合的方法,在 407-337nm 区域中确定了 H(2)PO 自由基的先前未知的电子光谱。使用高精度从头算预测基态和前两个激发双重态的性质来识别要搜索电子跃迁的光谱区域,并用于辅助数据分析。该带系统被分配为 B̃(2)A(')-X̃(2)A(')电子跃迁,涉及将电子从π轨道提升到π∗分子轨道。通过对高分辨率 LIF 光谱的旋转分析确定激发态 r(0)分子结构为 r(PO) = 1.6710(2) Å, r(PH) = 1.4280(6) Å, θ(HPO) = 105.68(7)°, θ(HPH) = 93.3(2)°, 和平面外角 = 66.8(2)°。电子激发导致的结构变化,包括 PO 键长和平面外角的显著增加,这与分子轨道理论和我们之前对等电子 H(2)AsO、Cl(2)PS 和 F(2)PS 自由基的研究结果一致。