Department of Chemistry, Lomonosov Moscow State University, Moscow 119991, Russia.
J Phys Chem A. 2022 Jun 23;126(24):3893-3902. doi: 10.1021/acs.jpca.2c01774. Epub 2022 Jun 13.
The NH···CO complex can be considered an important building block for cold synthetic astrochemistry leading to the formation of complex organic molecules, including key prebiotic species. In this work, we have studied the radiation-induced transformations of this complex in Ar, Kr, and Xe matrices using FTIR spectroscopy. On the basis of comparison with the quantum chemical calculations at the CCSD(T)/L2a_3 level of theory, it was found that the initial complex had the configuration with hydrogen bonding through the carbon atom of CO. Irradiation of the matrix isolated complex with X-rays at 6 K leads to the formation of a number of synthetic products, namely, HNCO (in all matrices), formamide NHCHO, NHCO, and HNCO-H (in argon and krypton). The matrix effect on the product distribution was explained by the involvement of different excited states of the complex in their formation. It was suggested that formamide results from the singlet excited states while other species mainly originate from triplet excited states. The latter states are efficiently populated through ion-electron recombination (in all matrices) and through intersystem crossing (particularly, in xenon). High yield of the recombination triplet states is a feature of the processes induced by high-energy radiation (in contrast to direct photolysis). NCO, CN, and NO were found as minor secondary products at high adsorbed doses. The astrochemical implications of the obtained results are discussed.
NH···CO 络合物可以被认为是冷合成天体化学中形成复杂有机分子的重要构建块,包括关键的前生物种。在这项工作中,我们使用傅里叶变换红外光谱法研究了该络合物在 Ar、Kr 和 Xe 基质中的辐射诱导转化。基于与 CCSD(T)/L2a_3 理论水平的量子化学计算的比较,发现初始络合物具有通过 CO 的碳原子形成氢键的构型。在 6 K 下用 X 射线辐照基质隔离的络合物会导致形成许多合成产物,即 HNCO(在所有基质中)、甲酰胺 NHCHO、NHCO 和 HNCO-H(在氩气和氪气中)。通过涉及络合物不同激发态的形成,解释了基质对产物分布的影响。有人认为,甲酰胺来自单重态激发态,而其他物质主要源自三重态激发态。通过离子-电子复合(在所有基质中)和系间窜越(特别是在氙气中)有效地填充了后一种状态。高能辐射诱导的过程的特征是三重态复合态的高产率(与直接光解相反)。在高吸附剂量下,发现 NCO、CN 和 NO 是次要的二次产物。讨论了所获得结果的天体化学意义。