Silfies Myles C, Kowzan Grzegorz, Lewis Neomi, Allison Thomas K
Departments of Chemistry and Physics, Stony Brook University, Stony Brook, NY 11790-3400, USA.
Phys Chem Chem Phys. 2021 Apr 28;23(16):9743-9752. doi: 10.1039/d1cp00631b.
Broadband ultrafast optical spectroscopy methods, such as transient absorption spectroscopy and 2D spectroscopy, are widely used to study molecular dynamics. However, these techniques are typically restricted to optically thick samples, such as solids and liquid solutions. In this article we discuss a cavity-enhanced ultrafast transient absorption spectrometer covering almost the entire visible range with a detection limit of ΔOD < 1 × 10-9, extending broadband all-optical ultrafast spectroscopy techniques to dilute beams of gas-phase molecules and clusters. We describe the technical innovations behind the spectrometer and present transient absorption data on two archetypical molecular systems for excited-state intramolecular proton transfer, 1'-hydroxy-2'-acetonapthone and salicylideneaniline, under jet-cooled and Ar cluster conditions.
宽带超快光学光谱方法,如瞬态吸收光谱和二维光谱,被广泛用于研究分子动力学。然而,这些技术通常仅限于光学厚样品,如固体和液体溶液。在本文中,我们讨论了一种腔增强超快瞬态吸收光谱仪,其覆盖几乎整个可见光范围,检测限为ΔOD < 1×10⁻⁹,将宽带全光学超快光谱技术扩展到气相分子和团簇的稀释束。我们描述了该光谱仪背后的技术创新,并展示了在喷射冷却和氩团簇条件下,两种用于激发态分子内质子转移的典型分子体系(1'-羟基-2'-乙酰萘和水杨醛苯胺)的瞬态吸收数据。