Roy Tarun Kumar, Qian Yujie, Karlsson Elizabeth, Rabayah Rawan, Sojdak Christopher A, Kozlowski Marisa C, Karsili Tolga N V, Lester Marsha I
Department of Chemistry, University of Pennsylvania Philadelphia PA 19104-6323 USA
Department of Chemistry, University of Louisiana Lafayette LA USA.
Chem Sci. 2024 Mar 20;15(16):6160-6167. doi: 10.1039/d4sc00151f. eCollection 2024 Apr 24.
Organic hydroperoxides (ROOH) are ubiquitous in the atmospheric oxidation of volatile organic compounds (VOCs) as well as in low-temperature oxidation of hydrocarbon fuels. The present work focuses on a prototypical cyclic hydroperoxide, cyclohexyl hydroperoxide (CHHP). The overtone OH stretch (2) spectrum of jet-cooled CHHP is recorded by IR multiphoton excitation with UV laser-induced fluorescence detection of the resulting OH products. A distinctive IR feature is observed at 7012.5 cm. Two conformers of CHHP are predicted to have similar stabilities (within 0.2 kcal mol) and overtone OH stretch transitions (2), yet are separated by a significant interconversion barrier. The IR power dependence indicates that absorption of three or more IR photons is required for dissociation of CHHP to cyclohexoxy (RO) and OH radical products. Accompanying high-level single- and multi-reference electronic structure calculations quantitatively support the experimental results. Calculations are extended to a range of organic hydroperoxides to examine trends in bond dissociation energies associated with RO + OH formation and compared with prior theoretical results.
有机氢过氧化物(ROOH)在挥发性有机化合物(VOCs)的大气氧化以及烃类燃料的低温氧化过程中普遍存在。目前的工作聚焦于一种典型的环状氢过氧化物——环己基氢过氧化物(CHHP)。通过红外多光子激发并利用紫外激光诱导荧光检测生成的OH产物,记录了喷射冷却的CHHP的泛频OH伸缩振动(ν2)光谱。在7012.5 cm−1处观察到一个独特的红外特征峰。预测CHHP的两种构象具有相似的稳定性(相差在0.2 kcal mol−1以内)和泛频OH伸缩振动跃迁(ν2),但它们之间存在显著的相互转化势垒。红外功率依赖性表明,CHHP分解为环己氧基(RO)和OH自由基产物需要吸收三个或更多的红外光子。同时进行的高水平单参考和多参考电子结构计算定量地支持了实验结果。计算扩展到一系列有机氢过氧化物,以研究与RO + OH形成相关的键解离能趋势,并与先前的理论结果进行比较。