Mengesha Ephriem T, Zehnacker-Rentien Anne, Sepioł J, Kijak M, Waluk J
Institut des Sciences Moléculaires d'Orsay, ISMO, CNRS Université Paris Sud , Bât. 210-91405 Orsay Cédex, France.
J Phys Chem B. 2015 Feb 12;119(6):2193-203. doi: 10.1021/jp505553z. Epub 2014 Aug 27.
Porphycene (Pc) is a well-known model for studying double hydrogen transfer, which shows vibrational-mode-specific tunneling splitting when isolated in supersonic jets or helium nanodroplets. The effect of deuteration on tunneling splitting is reported for jet-cooled heterogeneous, deuterated Pc samples (Pc-d(mix)) with the prevailing contribution of Pc-d12 isotopologue. The sample introduced into the gas phase using laser desorption is studied by means of laser-induced fluorescence (LIF) and single vibronic level fluorescence (SVLF) measurements, in combination with quantum chemical calculations. The influence of molecular symmetry is studied by comparing Pc, Pc-d12, and Pc-d11. The spectra of Pc-d12 show strong similarity to those of the parent undeuterated porphycene (Pc). Comparable tunneling splitting is observed in the two isotopologues, both for the 0-0 transition and the most efficient promoting 2Ag mode. In contrast, an unusual isotopic effect is observed for the totally symmetrical 4Ag mode. While this vibration behaves as a neutral mode in Pc, neither enhancing nor decreasing the tunneling efficiency, it strongly promotes hydrogen transfer in Pc-d12. This observation is explained in terms of modification of the displacement vectors of the 4Ag mode upon deuteration. It demonstrates that isotope substitution affects hydrogen transfer even when the weak structural modifications are far from the reaction center, emphasizing the strongly multidimensional nature of the tunneling process.
卟吩(Pc)是研究双氢转移的一个著名模型,当它在超声速射流或氦纳米液滴中孤立时,会表现出特定振动模式的隧穿分裂。本文报道了氘代对喷射冷却的多相氘代Pc样品(Pc-d(混合))隧穿分裂的影响,其中Pc-d12同位素异构体占主导。通过激光诱导荧光(LIF)和单振动能级荧光(SVLF)测量,并结合量子化学计算,研究了利用激光解吸引入气相的样品。通过比较Pc、Pc-d12和Pc-d11研究了分子对称性的影响。Pc-d12的光谱与未氘代的母体卟吩(Pc)的光谱有很强的相似性。在两种同位素异构体中,对于0-0跃迁和最有效的促进2Ag模式,都观察到了相当的隧穿分裂。相比之下,对于完全对称的4Ag模式,观察到了一种不寻常的同位素效应。虽然这种振动在Pc中表现为中性模式,既不提高也不降低隧穿效率,但它在Pc-d12中强烈促进氢转移。这一观察结果是根据氘代后4Ag模式位移矢量的变化来解释的。它表明,即使弱结构修饰远离反应中心,同位素取代也会影响氢转移,强调了隧穿过程的强多维性质。