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The C_2H_5+O_2 Reaction Mechanism:High-Level ab Initio Characterizations

机译:C_2H_5 + O_2反应机理:高级从头算表征

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摘要

The C2H5 + 02 reaction, central to ethane oxidation and thus of fundamental importance to hydrocarbon combustion chemistry, has been examined in detail via highly sophisticated electronic structure methods. The geometries, energies, and harmonic vibrational frequencies of the reactants, transition states, intermediates, and products for the reaction of the ethyl radical (X 2A’) with 02 (X 3X, a ‘A5) have been investigated using the CCSD and CCSD(T) ab initio methods with basis sets ranging in quality from double-zeta plus polarization (DZP) to triple-zeta plus double polarization with f functions (TZ2PE). Five mechanisms (M1—M5) involving the ground-state reactants are introduced within the context of previous experimental and theoretical studies. In this work, each mechanism is systematically explored, giving the following overall 0 K activation energies with respect’ to ground-state reactants, Ea(O K), at our best level of theory: (Ml) direct hydrogen abstraction from the ethyl radical by 02 to give ethylene ± HO2’, Ea(O K) = ±15.1 kcal moL’; (M2) ethylperoxy /3-hydrogen transfer with 0—0 bond rupture to yield oxirane + OH, Ea(0 K) = +5.3 kcal moL’; (M3) ethylperoxy a-hydrogen transfer with 0—0 bond rupture to yield acetaldehyde ± ‘OH, Ea(0 K) +11.5 kcal moL’; (M4) ethylperoxy /3-hydrogen transfer with C—O bond rupture to yield ethylene + HO2’, Ea(0 K)—±5.3 kcal mol’, the C—0 bond rupture barrier lying 1.2 kcal moP’ above the 0—0 bond rupture barrier of M2; (M5) concerted elimination of 1102’ from the ethylperoxy radical to give ethylene + 1102’, Ea(0 K)—0.9 kcal moP’. We show that MS is energetically preferred and is also the only mechanism consistent with experimental observations of a negative temperature coefficient. The reverse reaction (C2H4 + HO~ —~ C21-L,OOH) has a zero-point-corrected barrier of 14.4 kcal mol~(-1).
机译:已通过高度复杂的电子结构方法详细检查了C2H5 + 02反应(对乙烷氧化至关重要,因此对烃燃烧化学至关重要)。使用CCSD和CCSD研究了乙基(X 2A')与02(X 3X,'A5)反应的反应物,过渡态,中间体和产物的几何形状,能量和谐波振动频率(T)从头算的方法,其基础集的质量范围从双峰加极化(DZP)到三峰加双极化以及f函数(TZ2PE)。在先前的实验和理论研究的背景下,介绍了涉及基态反应物的五种机理(M1-M5)。在这项工作中,系统地探索了每种机理,并以我们的最佳理论水平给出了相对于基态反应物Ea(OK)的以下总体0 K活化能:(M1)通过氢直接从乙基中提取氢02给出乙烯±HO2',Ea(OK)=±15.1 kcal moL'; (M2)0-0键断裂的乙基过氧/ 3-氢转移产生环氧乙烷+ OH,Ea(0 K)= +5.3 kcal moL'; (M3)带有0-0键断裂的乙基过氧a-氢转移产生乙醛±'OH,Ea(0 K)+11.5 kcal moL'; (M4)具有C-O键断裂的乙基过氧/ 3-氢转移产生乙烯+ HO2',Ea(0 K)-±5.3 kcal mol',C-0键断裂屏障位于0-上方1.2 kcal moP'。 M2的键断裂屏障为0; (M5)协同消除了乙基过氧自由基中的1102',得到乙烯+ 1102',Ea(0 K)-0.9 kcal moP'。我们表明,MS在能量上是优选的,并且也是与负温度系数的实验观察结果一致的唯一机制。逆反应(C2H4 + HO ~~ C21-L,OOH)的零点校正势垒为14.4 kcal mol〜(-1)。

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