Ciąćka Piotr, Fita Piotr, Listkowski Arkadiusz, Radzewicz Czesław, Waluk Jacek
Institute of Experimental Physics, Faculty of Physics, University of Warsaw , Pasteura 5, 02-093 Warsaw, Poland.
Institute of Physical Chemistry, Polish Academy of Sciences , Kasprzaka 44/52, 01-224 Warsaw, Poland.
J Phys Chem Lett. 2016 Jan 21;7(2):283-8. doi: 10.1021/acs.jpclett.5b02482. Epub 2016 Jan 7.
Investigation of the double hydrogen transfer in porphycene, its 2,7,12,17-tetra-tert-butyl derivative, and their N-deuterated isotopologues revealed the dominant role of tunneling, even at room temperature in condensed phase. Ultrafast optical spectroscopy with polarized light employed in a wide range of temperatures allowed the identification and evaluation of contributions of two tunneling modes: vibrational ground-state tunneling, occurring from the zero vibrational level, and vibrationally activated, via a large amplitude, low-frequency mode. Good correspondence was found between the rates of incoherent tunneling occurring in condensed phase and the values estimated on the basis of tunneling splittings observed in molecules isolated in supersonic jets or helium nanodroplets. The results provide solid experimental insight into widely proposed quantum facets of ubiquitous hydrogen-transfer phenomena.
对苝、其2,7,12,17-四叔丁基衍生物及其N-氘代同位素体中的双氢转移进行研究发现,即使在凝聚相中的室温下,隧穿也起主要作用。在很宽的温度范围内使用偏振光的超快光学光谱法能够识别和评估两种隧穿模式的贡献:从零振动能级发生的振动基态隧穿,以及通过大幅度低频模式进行的振动激活隧穿。发现凝聚相中发生的非相干隧穿速率与基于在超声速喷射或氦纳米液滴中分离的分子中观察到的隧穿分裂所估计的值之间有良好的对应关系。这些结果为普遍存在的氢转移现象中广泛提出的量子方面提供了可靠的实验见解。