Kinetics, mechanism, and thermochemistry of the gas-phase reaction of atomic chlorine with pyridine

被引:18
作者
Zhao, Z.
Huskey, D. T.
Olsen, K. J.
Nicovich, J. M.
Mckee, M. L.
Wine, P. H. [1 ]
机构
[1] Georgia Inst Technol, Sch Earth & Atmospher Sci, Atlanta, GA 30332 USA
[2] Georgia Inst Technol, Sch Chem & Biochem, Atlanta, GA 30332 USA
[3] Auburn Univ, Dept Chem & Biochem, Auburn, AL 36849 USA
关键词
D O I
10.1039/b707017a
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
A laser flash photolysis-resonance fluorescence technique has been employed to study the kinetics of the reaction of atomic chlorine with pyridine (C5H5N) as a function of temperature (215-435 K) and pressure (25-250 Tort) in nitrogen bath gas. At T ! 299 K, measured rate coefficients are pressure independent and a significant H/D kinetic isotope effect is observed, suggesting that hydrogen abstraction is the dominant reaction pathway. The following Arrhenius expression adequately describes all kinetic data at 299-435 K for C5H5N: k(1a) = (2.08 +/- 0.47) x 10(-11) exp[-(1410 +/- 80)/T] cm(3) molecule(-1)s(-1) (uncertainties are 2 sigma, precision only). At 216 K <= T <= 270 K, measured rate coefficients are pressure dependent and are much faster than computed from the above Arrhenius expression for the H-abstraction pathway, suggesting that the dominant reaction pathway at low temperature is formation of a stable adduct. Over the ranges of temperature, pressure, and pyridine concentration investigated, the adduct undergoes dissociation on the time scale of our experiments (10(-5)-10(-2) s) and establishes an equilibrium with Cl and pyridine. Equilibrium constants for adduct formation and dissociation are determined from the forward and reverse rate coefficients. Second- and third-law analyses of the equilibrium data lead to the following thermochemical parameters for the addition reaction: Delta H-r(298)degrees = -47.2 +/- 2.8 kJ mol(-1), Delta H-r(0)degrees = -46.7 +/- 3.2 kJ mol(-1), and Delta S-r(298)degrees = -98.7 +/- 6.5 J mol(-1)K(-1). The enthalpy changes derived from our data are in good agreement with ab initio calculations reported in the literature (which suggest that the adduct structure is planar and involves formation of an N-Cl sigma-bond). In conjunction with the well-known heats of formation of atomic chlorine and pyridine, the above Delta H-r values lead to the following heats of formation for C5H5N-Cl at 298 K and 0 K: Delta H-f(298)degrees= 216.0 +/- 4.1 kJ mol(-1), Delta(f)H0 = 233.4 +/- 4.6 kJ mol(-1) Addition of Cl to pyridine could be an important atmospheric loss process for pyridine if the C5H5N-Cl product is chemically degraded by processes that do not regenerate pyridine with high yield.
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页码:4383 / 4394
页数:12
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