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Role of photolysis frequency in enhanced selectivity and yield for controlled bond breaking in HOD

机译:光解频率在HOD受控键断裂中提高选择性和产率的作用

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Quantum dynamical calculations on HOD subjected to different combinations of IR and UV pulses have been made to isolate field attributes which maximize selectivity and yield in the photodissociation of the desired O-H/O-D bond. Results from IR/UV pulse combinations which provide very high selectivity and/or yield are analyzed in detail by using population transfer, probability density flow, and flux variations to obtain microdynamic details favoring selectivity and yield. Results indicate that a 2727 cm(-1) 50 fs Gaussian IR pulse in conjunction with a 46 062 cm(-1) 50 fs Gaussian UV pulse with a time lag of similar to 90 fs between the IR and UV pulses gives 79.1% flux in the H-O + D channel and 6.6% flux in the H + O-D channel, whereas a 3706 cm-1 50 fs IR pulse in conjunction with a 51090 cm(-1) UV pulse gives 9.2% flux in the H-O + D channel and 82.1% flux in the H + O-D channel. A 2727 cm(-1) 50 fs IR pulse in conjunction with a 40 062 cm-1 50 fs UV pulse provides the greatest selectivity among the sampled field profiles with a flux branching ratio of H-O + D/H + O-D approximate to 487.8, and a 3706 cm(-1) 50 fs IR pulse in conjunction witha 45090 cm(-1) 50 fs UV pulse achieves a flux branching ratio of H + O-D/H-O + D approximate to 1354.8.
机译:已经对HOD进行了IR和UV脉冲的不同组合进行了量子动力学计算,以隔离场属性,从而在所需O-H / O-D键的光解离中最大化选择性和产率。通过使用种群转移,概率密度流和通量变化详细分析了提供非常高的选择性和/或产率的IR / UV脉冲组合的结果,以获得有利于选择性和产率的微观动力学细节。结果表明,一个2727 cm(-1)50 fs高斯IR脉冲与一个46 062 cm(-1)50 fs高斯UV脉冲相结合,IR和UV脉冲之间的时间滞后类似于90 fs,可提供79.1%的通量HO + D通道中的通量和H + OD通道中的通量的6.6%,而3706 cm-1 50 fs IR脉冲与51090 cm(-1)的UV脉冲相结合,在HO + D通道中通量为9.2%, H + OD通道中的通量为82.1%。一个2727 cm(-1)50 fs的IR脉冲与一个40 062 cm-1 50 fs的UV脉冲一起提供了采样场分布图中的最大选择性,HO + D / H + OD的通量分支比约为487.8, 3706 cm(-1)50 fs IR脉冲和45090 cm(-1)50 fs UV脉冲可实现H + OD / HO + D的磁通分支比接近1354.8。

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