...
首页> 外文期刊>European journal of mass spectrometry >The C3H7+ appearance energy from 2-iodopropane and 2-chloropropane studied by threshold photoelectron photoion coincidence
【24h】

The C3H7+ appearance energy from 2-iodopropane and 2-chloropropane studied by threshold photoelectron photoion coincidence

机译:通过阈值光电子光子重合研究了2-碘丙烷和2-氯丙烷的C3H7 +出现能

获取原文
获取原文并翻译 | 示例

摘要

The dissociation onset for halogen atom loss was investigated for 2-iodo and 2-chloropropane ions using a newly developed threshold photoelectron photoion coincidence (TPEPICO) technique that suppresses the effects of hot electrons. This study was undertaken in order to resolve current discrepancies concerning these onsets in the literature. The 0 K dissociation thresholds were determined to be 9.818 +/- 0.010 and 11.036 +/- 0.010 eV for 2-C3H7I and 2-C3H7Cl, respectively. These numbers agree quite well with photoionization and a mass analyzed threshold ionization (MATI) study, but are significantly lower than onsets measured by the much higher resolution pulsed field ionization PEPICO method. The derived C3H7I heat of formation at 298K is 803.9 +/- 1.5 kJ mol(-1), and a more precise value for the 298K 2-iodopropane heat of formation is -40.8 +/- 1.3 kJ mol(-1). The derived proton affinity of propene is 746.1 kJ mol(-1). We have also performed a high-level ab initio calculation on the 0 K dissociation limit, E-0, for C3H7+ from C3H7Cl at the CCSD (T)/CBS level of theory with high-level corrections. The theoretical prediction of 11.048-11.061 eV for E-0 (C3H7+) from C3H7Cl is found to be consistent with the current experimental value.
机译:使用新开发的抑制热电子效应的阈值光电子光子符合(TPEPICO)技术,对2-碘和2-氯丙烷离子的卤素原子损失的解离起始进行了研究。进行这项研究是为了解决文献中关于这些发作的当前差异。对于2-C3H7I和2-C3H7Cl,0 K解离阈值分别确定为9.818 +/- 0.010和11.036 +/- 0.010 eV。这些数字与光电离和质量分析阈值电离(MATI)研究非常吻合,但远低于通过分辨率更高的脉冲场电离PEPICO方法测得的起效。在298K时导出的C3H7I形成热为803.9 +/- 1.5 kJ mol(-1),而对于298K 2-碘丙烷的形成热,更精确的值为-40.8 +/- 1.3 kJ mol(-1)。丙烯的质子亲和力为746.1 kJ mol(-1)。我们还从CC3(C)/ CBS理论水平对C3H7Cl从C3H7Cl的C3H7 +的0 K解离极限E-0进行了高级从头计算,并进行了高级校正。发现C3H7Cl对E-0(C3H7 +)的11.048-11.061 eV的理论预测与当前实验值一致。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号