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利用库仑爆炸成像直接观测2-硫尿嘧啶内转换过程中的超快对称性降低。

Direct observation of ultrafast symmetry reduction during internal conversion of 2-thiouracil using Coulomb explosion imaging.

作者信息

Jahnke Till, Mai Sebastian, Bhattacharyya Surjendu, Chen Keyu, Boll Rebecca, Castellani Maria Elena, Dold Simon, Frühling Ulrike, Green Alice E, Ilchen Markus, Ingle Rebecca, Kastirke Gregor, Lam Huynh Van Sa, Lever Fabiano, Mayer Dennis, Mazza Tommaso, Mullins Terence, Ovcharenko Yevheniy, Senfftleben Björn, Trinter Florian, Usenko Sergey, Venkatachalam Anbu Selvam, Rudenko Artem, Rolles Daniel, Meyer Michael, Ibrahim Heide, Gühr Markus

机构信息

Max-Planck-Institut für Kernphysik, Heidelberg, Germany.

European XFEL, Schenefeld, Germany.

出版信息

Nat Commun. 2025 Feb 28;16(1):2074. doi: 10.1038/s41467-025-57083-3.

Abstract

The photochemistry of heterocyclic molecules plays a decisive role for processes and applications like DNA photo-protection from UV damage and organic photocatalysis. The photochemical reactivity of heterocycles is determined by the redistribution of photoenergy into electronic and nuclear degrees of freedom, initially involving ultrafast internal conversion. Most heterocycles are planar in their ground state and internal conversion requires symmetry breaking. To lower the symmetry, the molecule must undergo an out-of-plane motion, which has not yet been observed directly. Here we show using the example of 2-thiouracil, how Coulomb explosion imaging can be utilized to extract comprehensive information on this molecular deformation, linking the extracted deplanarization of the molecular geometry to the previously studied temporal evolution of its electronic properties. Particularly, the protons of the exploded molecule are well-suited messengers carrying rich information on its geometry at distinct times after electronic excitation. We expect that our new analysis approach centered on these peripheral protons can be adapted as a general concept for future time-resolved studies of complex molecules in the gas phase.

摘要

杂环分子的光化学对于诸如DNA免受紫外线损伤的光保护和有机光催化等过程及应用起着决定性作用。杂环的光化学反应性由光能重新分配到电子和核自由度来决定,最初涉及超快内转换。大多数杂环在基态时是平面的,而内转换需要打破对称性。为了降低对称性,分子必须经历面外运动,而这尚未被直接观测到。在此,我们以2-硫尿嘧啶为例,展示了如何利用库仑爆炸成像来提取关于这种分子变形的全面信息,将提取的分子几何结构的平面化与之前研究的其电子性质的时间演化联系起来。特别地,爆炸分子的质子是携带关于其在电子激发后不同时刻几何结构丰富信息的理想信使。我们期望以这些外围质子为中心的新分析方法能够作为一种通用概念,适用于未来对气相中复杂分子的时间分辨研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a0b/11871051/f7c41bd592f7/41467_2025_57083_Fig1_HTML.jpg

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