Bain Matthew, Hansen Christopher S, Karsili Tolga N V, Ashfold Michael N R
School of Chemistry , University of Bristol , Bristol , BS8 1TS , UK . Email:
School of Chemistry , University of New South Wales , Sydney , NSW 2052 , Australia . Email:
Chem Sci. 2019 Apr 23;10(20):5290-5298. doi: 10.1039/c9sc00738e. eCollection 2019 May 28.
We illustrate a new, collision-free experimental strategy that allows determination of the absolute probabilities of rival bond fission processes in a photoexcited molecule - here -butylmethylsulfide (BSM). The method combines single photon ('universal') ionization laser probe methods, simultaneous imaging of all probed fragments (multi-mass ion imaging) and the use of an appropriate internal calibrant (here dimethylsulfide). Image analysis allows quantification of the dynamics of the rival B-SM and BS-M bond fission processes following ultraviolet (UV) excitation of BSM and shows the former to be twice as probable, despite the only modest (∼2%) differences in the respective ground state equilibrium C-S bond lengths or bond strengths. Rationalising this finding should provide a stringent test of the two close-lying, coupled excited states of A'' symmetry accessed by UV excitation in BSM and related thioethers, of the respective transition dipole moment surfaces, and of the geometry dependent non-adiabatic couplings that enable the rival C-S bond fissions.
我们展示了一种全新的、无碰撞的实验策略,该策略能够确定光激发分子——此处为丁基甲基硫醚(BSM)中相互竞争的键断裂过程的绝对概率。该方法结合了单光子(“通用”)电离激光探测方法、对所有探测碎片的同步成像(多质量离子成像)以及使用合适的内标物(此处为二甲基硫醚)。图像分析能够对BSM在紫外(UV)激发后相互竞争的B - SM和BS - M键断裂过程的动力学进行量化,结果表明尽管各自基态平衡C - S键长度或键强度仅存在适度的(约2%)差异,但前者发生的概率是后者的两倍。对这一发现进行合理化解释,应能对BSM及相关硫醚中通过UV激发所涉及的两个紧密相邻的A''对称耦合激发态、各自的跃迁偶极矩面以及促成相互竞争的C - S键断裂的几何相关非绝热耦合进行严格检验。