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UV-Photoexcitation and Ultrafast Dynamics of HCFC-132b (CF2ClCH2Cl)

机译:HCFC-132b的紫外光激发和超快动力学(CF 2 ClCH 2 Cl)

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摘要

The UV-induced photochemistry of HCFC-132b (CFClCHCl) was investigated by computing excited-state properties with time-dependent density functional theory (TDDFT), multiconfigurational second-order perturbation theory (CASPT2), and coupled cluster with singles, doubles, and perturbative triples (CCSD(T)). Excited states calculated with TDDFT show good agreement with CASPT2 and CCSD(T) results, correctly predicting the main excited-states properties. Simulations of ultrafast nonadiabatic dynamics in the gas phase were performed, taking into account 25 electronic states at TDDFT level starting in two different spectral windows (8.5 ± 0.25 and 10.0 ± 0.25 eV). Experimental data measured at 123.6 nm (10 eV) is in very good agreement with our simulations. The excited-state lifetimes are 106 and 191 fs for the 8.5 and 10.0 eV spectral windows, respectively. Internal conversion to the ground state occurred through several different reaction pathways with different products, where 2Cl, C-Cl bond breakage, and HCl are the main photochemical pathways in the low-excitation region, representing 95% of all processes. On the other hand, HCl, HF, and C-Cl bond breakage are the main reaction pathways in the higher excitation region, with 77% of the total yield.
机译:通过使用时变密度泛函理论(TDDFT),多构型二阶摄动理论(CASPT2)以及具有单,双和双的耦合簇来计算激发态性质,研究了HCFC-132b(CFClCHCl)的紫外线诱导光化学。微扰三元组(CCSD(T))。用TDDFT计算的激发态与CASPT2和CCSD(T)结果显示出良好的一致性,正确地预测了主要的激发态性质。考虑到在两个不同的光谱窗口(8.5±0.25和10.0±0.25eV)开始的TDDFT级的25个电子态,进行了气相超快非绝热动力学的模拟。在123.6 nm(10 eV)下测得的实验数据与我们的模拟非常吻合。 8.5和10.0 eV光谱窗口的激发态寿命分别为106和191 fs。内部转化为基态是通过几种具有不同产物的不同反应途径发生的,其中2Cl,C-Cl键断裂和HCl是低激发区的主要光化学途径,占所有过程的95%。另一方面,HCl,HF和C-Cl键断裂是较高激发区的主要反应途径,占总收率的77%。

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