首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Nonadiabatic Transition in the A-Band Photodissociation of Ethyl Iodide from 294 to 308 nm by Using Velocity Imaging Detection
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Nonadiabatic Transition in the A-Band Photodissociation of Ethyl Iodide from 294 to 308 nm by Using Velocity Imaging Detection

机译:速度成像检测法检测294-308 nm碘乙烷在A波段光解离中的非绝热转变

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Photodissociation dynamics of ethyl iodide in the A-band is investigated at wavelengths between 294 and 308 nm using resonance-enhanced multiphoton ionization technique combined with velocity imaging detection. The I/I* branching, translational energy disposals, anisotropy parameters, and curve crossing probabilities of the dissociation channels are determined. The I(5p(2) P-3/2)-product channel is found to have hotter internal states of C2H5, and the I*(5p(2)P(1/2)) channel is accompanied by colder C2H5. Anisotropy parameters (beta) for the I* channel remain at 2.0, indicating that the I* production should originate from the (3)Q(0) state. The beta values are from 1.6 to 1.9 in the I-product channel, which comprises two components of direct excitation of IQ, and nonadiabatic transition between the (3)Q(0) and (1)Q(1) states. The curve crossing probability rises rapidly around the conical intersection but remains almost constant after passing through the curve crossing. The IQ, and (3)Q(0) states in the exit region are thus expected to cross almost parallel along the dissociation coordinate. As compared to the case of CH3I the nonadiabatic transition probabilities are slightly enhanced by an ethyl-substituted group.
机译:使用共振增强多光子电离技术结合速度成像检测技术,研究了294到308 nm之间的碘在A波段的光解动力学。确定了I / I *分支,平移能量处理,各向异性参数和解离通道的曲线交叉概率。发现I(5p(2)P-3 / 2)乘积通道具有更热的C2H5内部状态,而I *(5p(2)P(1/2))通道伴有更冷的C2H5。 I *通道的各向异性参数(beta)保持为2.0,表明I *产生应源自(3)Q(0)状态。 I乘积通道中的beta值从1.6到1.9,包括IQ的直接激发和(3)Q(0)和(1)Q(1)状态之间的非绝热转变的两个分量。曲线交叉概率在圆锥形交叉点附近迅速上升,但在通过曲线交叉后几乎保持恒定。因此,预计出口区域中的IQ和(3)Q(0)状态将沿着解离坐标几乎平行地交叉。与CH3I的情况相比,乙基取代的基团会稍微提高非绝热转变的可能性。

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