Department of Chemistry and Biomolecular Sciences, University of Ottawa, Ottawa, Canada.
INFIQC - CONICET, Departamento fisicoquímica, Universidad Nacional de Córdoba, Córdoba, Argentina.
J Mass Spectrom. 2023 Jan;58(1):e4901. doi: 10.1002/jms.4901.
The thermal decomposition of the atmospheric constituent ethyl formate was studied by coupling flash pyrolysis with imaging photoelectron photoion coincidence (iPEPICO) spectroscopy using synchrotron vacuum ultraviolet (VUV) radiation at the Swiss Light Source (SLS). iPEPICO allows photoion mass-selected threshold photoelectron spectra (ms-TPES) to be obtained for pyrolysis products. By threshold photoionization and ion imaging, parent ions of neutral pyrolysis products and dissociative photoionization products could be distinguished, and multiple spectral carriers could be identified in several ms-TPES. The TPES and mass-selected TPES for ethyl formate are reported for the first time and appear to correspond to ionization of the lowest energy conformer having a cis (eclipsed) configuration of the O=C(H)-O-C(H )-CH and trans (staggered) configuration of the O=C(H)-O-C(H )-CH dihedral angles. We observed the following ethyl formate pyrolysis products: CH CH OH, CH CHO, C H , C H , HC(O)OH, CH O, CO , and CO, with HC(O)OH and C H pyrolyzing further, forming CO + H O and C H + H . The reaction paths and energetics leading to these products, together with the products of two homolytic bond cleavage reactions, CH CH O + CHO and CH CH + HC(O)O, were studied computationally at the M06-2X-GD3/aug-cc-pVTZ and SVECV-f12 levels of theory, complemented by further theoretical methods for comparison. The calculated reaction pathways were used to derive Arrhenius parameters for each reaction. The reaction rate constants and branching ratios are discussed in terms of the residence time and newly suggest carbon monoxide as a competitive primary fragmentation product at high temperatures.
采用瑞士光源(Swiss Light Source,SLS)同步真空紫外(vacuum ultraviolet,VUV)辐射,通过闪光光解与成像光电离-光电离符合(imaging photoelectron photoion coincidence,iPEPICO)光谱学联用,研究了大气成分甲酸乙酯的热分解。iPEPICO 允许对热解产物进行光离子质量选择的阈光电离光谱(mass-selected threshold photoelectron spectra,ms-TPES)的获取。通过阈光电离和离子成像,可以区分中性热解产物的母体离子和离解光电离产物,并且在几个 ms-TPES 中可以识别多个谱带载体。首次报道了甲酸乙酯的 TPES 和质量选择的 TPES,它们似乎对应于具有 O=C(H)-O-C(H )-CH 顺式(重叠)构象和 O=C(H)-O-C(H )-CH 二面角的反式(交错)构象的最低能量构象的电离。我们观察到以下甲酸乙酯热解产物:CH CH OH、CH CHO、C H 、C H 、HC(O)OH、CH O、CO 和 CO,其中 HC(O)OH 和 C H 进一步热解,形成 CO + H O 和 C H + H 。在 M06-2X-GD3/aug-cc-pVTZ 和 SVECV-f12 理论水平上,通过进一步的理论方法进行比较,研究了导致这些产物的反应路径和能量学,以及两个均裂键断裂反应 CH CH O + CHO 和 CH CH + HC(O)O 的产物。计算了每个反应的阿伦尼乌斯参数。根据停留时间和新提出的一氧化碳作为高温下的竞争性初级碎裂产物,讨论了反应速率常数和分支比。