Valadbeigi Younes, Ilbeigi Vahideh, Michalczuk Bartosz, Sabo Martin, Matejcik Stefan
Department of Chemistry, Faculty of Science, Imam Khomeini International University, Qazvin, Iran.
TOF Tech. Pars Company, Isfahan Science & Technology Town, Isfahan, Iran.
J Am Soc Mass Spectrom. 2019 Jul;30(7):1242-1253. doi: 10.1007/s13361-019-02180-z. Epub 2019 May 2.
Protonation, hydration, and cluster formation of ammonia, formaldehyde, formic acid, acetone, butanone, 2-ocatanone, 2-nonanone, acetophenone, ethanol, pyridine, and its derivatives were studied by IMS-TOFMS technique equipped with a corona discharge ion source. It was found that tendency of the protonated molecules, MH, to participate in hydration or cluster formation depends on the basicity of M. The molecules with higher basicity were hydrated less than those with lower basicity. The mass spectra of the low basic molecules such as formaldehyde exhibited larger clusters of MH(HO), while for compounds with high basicity such as pyridine, only MH and MHM peaks were observed. The results of DFT calculations show that enthalpies of hydrations and cluster formation decrease as basicities of the molecules increases. Using comparison of mass spectra of formic acid, formaldehyde, and ethanol, effect of structure on the cluster formation was also investigated. Formation of symmetric (MHM) and asymmetric proton-bound dimers (MHN) was studied by ion mobility and mass spectrometry techniques. Both theoretical and experimental results show that asymmetric dimers are formed more easily between molecules (M and N) with comparable basicity. As the basicity difference between M and N increases, the enthalpy of MHN formation decreases.
采用配备电晕放电离子源的离子迁移谱-飞行时间质谱(IMS-TOFMS)技术,研究了氨、甲醛、甲酸、丙酮、丁酮、2-辛酮、2-壬酮、苯乙酮、乙醇、吡啶及其衍生物的质子化、水合作用和团簇形成。研究发现,质子化分子MH参与水合或团簇形成的倾向取决于M的碱性。碱性较高的分子水合程度低于碱性较低的分子。低碱性分子(如甲醛)的质谱显示出较大的MH(HO)团簇,而对于高碱性化合物(如吡啶),仅观察到MH和MHM峰。密度泛函理论(DFT)计算结果表明,随着分子碱性的增加,水合作用和团簇形成的焓降低。通过比较甲酸、甲醛和乙醇的质谱,还研究了结构对团簇形成的影响。采用离子迁移和质谱技术研究了对称(MHM)和不对称质子键合二聚体(MHN)的形成。理论和实验结果均表明,碱性相当的分子(M和N)之间更容易形成不对称二聚体。随着M和N之间碱性差异的增加,MHN形成的焓降低。