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化学电离反应Sm + O → SmO(+) + e(.)的放热性评估。

Evaluation of the exothermicity of the chemi-ionization reaction Sm + O → SmO(+) + e(.).

作者信息

Cox Richard M, Kim JungSoo, Armentrout P B, Bartlett Joshua, VanGundy Robert A, Heaven Michael C, Ard Shaun G, Melko Joshua J, Shuman Nicholas S, Viggiano Albert A

机构信息

Department of Chemistry, University of Utah, Salt Lake City, Utah 84112, USA.

Department of Chemistry, Emory University, Atlanta, Georgia 30322, USA.

出版信息

J Chem Phys. 2015 Apr 7;142(13):134307. doi: 10.1063/1.4916396.

Abstract

The exothermicity of the chemi-ionization reaction Sm + O → SmO(+) + e(-) has been re-evaluated through the combination of several experimental methods. The thermal reactivity (300-650 K) of Sm(+) and SmO(+) with a range of species measured using a selected ion flow tube-mass spectrometer apparatus is reported and provides limits for the bond strength of SmO(+), 5.661 eV ≤ D0(Sm(+)-O) ≤ 6.500 eV. A more precise value is measured to be 5.725 ± 0.07 eV, bracketed by the observed reactivity of Sm(+) and SmO(+) with several species using a guided ion beam tandem mass spectrometer (GIBMS). Combined with the established Sm ionization energy (IE), this value indicates an exothermicity of the title reaction of 0.08 ± 0.07 eV, ∼0.2 eV smaller than previous determinations. In addition, the ionization energy of SmO has been measured by resonantly enhanced two-photon ionization and pulsed-field ionization zero kinetic energy photoelectron spectroscopy to be 5.7427 ± 0.0006 eV, significantly higher than the literature value. Combined with literature bond energies of SmO, this value indicates an exothermicity of the title reaction of 0.14 ± 0.17 eV, independent from and in agreement with the GIBMS result presented here. The evaluated thermochemistry also suggests that D0(SmO) = 5.83 ± 0.07 eV, consistent with but more precise than the literature values. Implications of these results for interpretation of chemical release experiments in the thermosphere are discussed.

摘要

通过多种实验方法相结合,对化学电离反应Sm + O → SmO(+) + e(-)的放热性进行了重新评估。报道了使用选定离子流管-质谱仪装置测量的Sm(+)和SmO(+)与一系列物种在300 - 650 K温度下的热反应性,并给出了SmO(+)键强度的限制范围,5.661 eV ≤ D0(Sm(+)-O) ≤ 6.500 eV。使用导向离子束串联质谱仪(GIBMS)测量的Sm(+)和SmO(+)与几种物种的反应性得出了更精确的值为5.725 ± 0.07 eV。结合已确定的Sm电离能(IE),该值表明标题反应的放热性为0.08 ± 0.07 eV,比之前的测定值小约0.2 eV。此外,通过共振增强双光子电离和脉冲场电离零动能光电子能谱测量出SmO的电离能为5.7427 ± 0.0006 eV,显著高于文献值。结合SmO的文献键能,该值表明标题反应的放热性为0.14 ± 0.17 eV,与本文给出的GIBMS结果无关但一致。评估的热化学还表明D0(SmO) = 5.83 ± 0.07 eV,与文献值一致但更精确。讨论了这些结果对热层中化学释放实验解释的影响。

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