Gas-Phase Lithium Cation Basicity: Revisiting the High Basicity Range by Experiment and Theory

被引:16
|
作者
Mayeux, Charly [1 ]
Burk, Peeter [1 ]
Gal, Jean-Francois [2 ]
Kaljurand, Ivari [1 ]
Koppel, Ilmar [1 ]
Leito, Ivo [1 ]
Sikk, Lauri [1 ]
机构
[1] Univ Tartu, EE-50090 Tartu, Estonia
[2] Univ Nice Sophia Antipolis, Inst Chem, CNRS, UMR 7272, F-06189 Nice, France
关键词
Lithium cation basicity; Equilibrium measurements; FT-ICR MS; Gas-phase basicity; G2(MP2) calculations; COLLISION-INDUCED DISSOCIATION; METAL ION-BINDING; KINETIC METHOD; HYDROGEN STORAGE; PI INTERACTIONS; AB-INITIO; THERMOCHEMICAL DETERMINATIONS; RADICAL POLYMERIZATION; ASSOCIATION REACTIONS; LI+;
D O I
10.1007/s13361-014-0970-4
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
According to high level calculations, the upper part of the previously published FT-ICR lithium cation basicity (LiCB at 373 K) scale appeared to be biased by a systematic downward shift. The purpose of this work was to determine the source of this systematic difference. New experimental LiCB values at 373 K have been measured for 31 ligands by proton-transfer equilibrium techniques, ranging from tetrahydrofuran (137.2 kJ mol(-1)) to 1,2-dimethoxyethane (202.7 kJ mol(-1)). The relative basicities (Delta LiCB) were included in a single self-consistent ladder anchored to the absolute LiCB value of pyridine (146.7 kJ mol(-1)). This new LiCB scale exhibits a good agreement with theoretical values obtained at G2(MP2) level. By means of kinetic modeling, it was also shown that equilibrium measurements can be performed in spite of the formation of Li bound dimers. The key feature for achieving accurate equilibrium measurements is the ion trapping time. The potential causes of discrepancies between the new data and previous experimental measurements were analyzed. It was concluded that the disagreement essentially finds its origin in the estimation of temperature and the calibration of Cook's kinetic method.
引用
收藏
页码:1962 / 1973
页数:12
相关论文
共 50 条
  • [1] Exceptionally High Proton and Lithium Cation Gas-Phase Basicity of the Anti-Diabetic Drug Metformin
    Raczynska, Ewa D.
    Gal, Lean-Francois
    Maria, Pierre-Charles
    Michalec, Piotr
    Zalewski, Marcin
    JOURNAL OF PHYSICAL CHEMISTRY A, 2017, 121 (45): : 8706 - 8718
  • [2] GAS-PHASE BASICITY OF SILANAMINES
    SHEA, KJ
    GOBEILLE, R
    BRAMBLETT, J
    THOMPSON, E
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1978, 100 (05) : 1611 - 1613
  • [3] Gas-phase basicity of methionine
    Desaphy, Sylvain
    Malosse, Christian
    Bouchoux, Guy
    JOURNAL OF MASS SPECTROMETRY, 2008, 43 (01): : 116 - 125
  • [4] GAS-PHASE BASICITY OF METHYLTHIOLACETATE
    GRUNWELL, JR
    FOERST, DL
    KAPLAN, F
    SIDDIGUI, J
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 1974, : 60 - 60
  • [5] Gas-phase Basicity of Glycine
    Bouchoux, Guy
    Chia, Ru Xuan
    CROATICA CHEMICA ACTA, 2009, 82 (01) : 47 - 61
  • [6] Gas-phase basicity of simple amides toward proton and lithium cation: an experimental and theoretical study
    Herreros, M
    Gal, JF
    Maria, PC
    Decouzon, M
    EUROPEAN MASS SPECTROMETRY, 1999, 5 (04): : 259 - 265
  • [7] Experimental validation of Gaussian-3 lithium cation affinities of amides: implications for the gas-phase lithium cation basicity scale
    Tsang, Y
    Siu, FM
    Ma, NL
    Tsang, CW
    RAPID COMMUNICATIONS IN MASS SPECTROMETRY, 2002, 16 (03) : 229 - 237
  • [8] The gas-phase basicity of sulfuric acid
    Do, K
    Klein, TP
    Pommerening, CA
    Bachrach, SM
    Sunderlin, LS
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1998, 120 (24) : 6093 - 6096
  • [9] ACIDITY AND BASICITY OF THIOCARBOXAMIDES IN THE GAS-PHASE
    DECOUZON, M
    EXNER, O
    GAL, JF
    MARIA, PC
    WAISSER, K
    JOURNAL OF PHYSICAL ORGANIC CHEMISTRY, 1994, 7 (09) : 511 - 517
  • [10] GAS-PHASE ACIDITY AND BASICITY - REVIEW
    AGAMI, C
    BULLETIN DE LA SOCIETE CHIMIQUE DE FRANCE PARTIE II-CHIMIE MOLECULAIRE ORGANIQUE ET BIOLOGIQUE, 1974, (5-6): : 869 - 876