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Collisional Energy Transfer of Highly Vibrationally Excited Polyatomic Molecules. The Effect of Excited Molecule Complexity

机译:高振动激发多原子分子的碰撞能量转移。激发分子复杂性的影响

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Collisional relaxation was probed byCO2laser activated delayed fluorescence. The experimental information was adopted to determine the average energies transferred per collision (ΔE) from highly vibrationally excited polyatomic molecules to parent collider. The values of (ΔE) decreased with increasing the number of atoms in the excited molecules in line:biacetyl, acetophenone, benzophenone, antraquinone.The dependences of (ΔE) on the number of factors such as:1) the average vibrational energy residing in the vibrational modes of excited molecules;2) the potential of intermolecular interaction;3) the reduced mass, and others were analyzed in details. The general interplay was noticed between (ΔE) and the molecular parameters which determined the increasing interaction strength and the decreasing energy transfer efficiency due to the adiabatic constraints on the energy transfer.
机译:通过CO2激光激活延迟荧光探测碰撞弛豫。利用实验信息确定高振激发多原子分子向母体对撞机传递的每次碰撞平均能量(ΔE)。(ΔE)值随激发分子中原子数的增加而降低:双乙酰基、苯乙酮、二苯甲酮、蒽醌。(ΔE)对以下因素数量的依赖性:1)驻留在激发分子振动模式中的平均振动能量;2)分子间相互作用的潜力;3)质量减少等进行了详细分析。注意到(ΔE)与分子参数之间的一般相互作用,这些参数决定了由于对能量传递的绝热约束而增加的相互作用强度和能量传递效率的降低。

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