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气相色谱法测得的气/液分配数据错误。

Wrong gas/liquid partition data by gas chromatography.

作者信息

Kováts Ervin Sz, Kresz Richárd

机构信息

Ecole Polytechnique Fédérale de Lausanne, CH-1015 Lausanne, Switzerland.

出版信息

J Chromatogr A. 2006 Apr 28;1113(1-2):206-19. doi: 10.1016/j.chroma.2006.01.123. Epub 2006 Feb 23.

Abstract

In a paper published in 1992 [K.S. Reddy, J.-Cl. Dutoit, E.sz. Kováts, Pair-wise interactions by gas chromatography. I. Interaction free enthalpies of solutes with non-associated primary alcohol groups, J. Chromatogr. 609 (1992) 229] retention indices and standard chemical potential differences (SPOT-s) are given for about 160 solutes on a liquid branched paraffin hydrocarbon of the carbon number, z = 78. For the temperature dependence of the SPOT-s the proposal of Kirchhoff was accepted i.e. that at higher temperatures the molar heat capacity difference of the solute between the gas phase and the solution is nearly constant in a broad temperature range. The data were determined under conditions where the effect of adsorption could be neglected. By comparing the published data with those determined on another branched paraffin of the carbon number, z = 87 [F. Riedo, D. Fritz, G. Tarján, E.sz. Kováts, A tailor-made C87 hydrocarbon as a possible non-polar standard stationary phase for gas chromatography, J. Chromatogr. 126 (1976) 63] it is shown that the reported thermodynamic constants of solutes determined experimentally at higher temperatures (the group "H") are wrong on C78. In the present paper, the method of correction and the resulting corrected data are given. In later papers retention data are given on eight polar derivatives of the hydrocarbon C78 relative to those measured on the nonpolar standard [R. Cloux, G. Défayes, K. Fóti, J.-Cl. Dutoit, E.sz. Kováts, Pair-wise interactions by gas chromatography. III. Synthesis of isosteric stationary phases for gas chromatography, Synthesis (1993) 909; G. Défayes, K.S. Reddy, A. Dallos, E.sz. Kováts, Pair-wise interactions by gas chromatography. V. Interaction free enthalpies of solutes with primary chloro- and bromo-alkanes, J. Chromatogr. A 699 (1995) 131; K.S. Reddy, E.sz. Kováts, Pair-wise interactions by gas chromatography. II. Sociation free enthalpies of some hydrogen bonding solutes with non-associated primary alcohol groups, Chromatographia 34 (1992) 249; K.S. Reddy, R. Cloux, E.sz. Kováts, Pair-wise interactions by gas chromatography. IV. Interaction free enthalpies of solutes with trifluoromethyl-substituted alkanes, J. Chromatogr. A 673 (1994) 181; K.S. Reddy, R. Cloux, E.sz. Kováts, Pair-wise interactions by gas chromatography. VI. Interaction free enthalpies of solutes with primary methoxyalkane, cyanoalkane and alkanethiol groups, J. Chromatogr. A 704 (1995) 387; A. Dallos, A. Sisak, Z. Kulcsár, E.sz. Kováts, Pair-wise interactions by gas chromatography. VII. Interaction free enthalpies of solutes with secondary alcohol groups, J. Chromatogr. A 904 (2000) 211]. Obviously, the same data which are wrong in the nonpolar standard are also wrong in these solvents. The corrected data in the polar solvents are given in supplementary tables.

摘要

在1992年发表的一篇论文中[K.S.雷迪、J.-Cl.迪图瓦、E.sz.科瓦奇,气相色谱中的成对相互作用。I.溶质与非缔合伯醇基团的相互作用自由焓,《色谱杂志》609 (1992) 229]给出了约160种溶质在碳数为z = 78的液态支链石蜡烃上的保留指数和标准化学势差(SPOT-s)。对于SPOT-s的温度依赖性,接受了基尔霍夫的提议,即在较高温度下,溶质在气相和溶液之间的摩尔热容差在很宽的温度范围内几乎是恒定的。这些数据是在可以忽略吸附效应的条件下测定的。通过将已发表的数据与在另一种碳数为z = 87的支链石蜡上测定的数据进行比较[F.里多、D.弗里茨、G.塔尔扬、E.sz.科瓦奇,一种特制的C87烃作为气相色谱可能的非极性标准固定相,《色谱杂志》126 (1976) 63],结果表明,在较高温度下实验测定的溶质的报道热力学常数(“H”组)在C78上是错误的。在本文中,给出了校正方法和由此得到的校正数据。在后来的论文中,给出了相对于在非极性标准上测量的数据,烃C78的八种极性衍生物的保留数据[R.克卢、G.德费耶、K.福蒂、J.-Cl.迪图瓦、E.sz.科瓦奇,气相色谱中的成对相互作用。III.气相色谱等排固定相的合成,《合成》(1993) 909;G.德费耶、K.S.雷迪、A.达洛斯、E.sz.科瓦奇,气相色谱中的成对相互作用。V.溶质与伯氯代和溴代烷烃的相互作用自由焓,《色谱杂志A》699 (1995) 131;K.S.雷迪、E.sz.科瓦奇,气相色谱中的成对相互作用。II.一些氢键溶质与非缔合伯醇基团的缔合自由焓,《色谱学》34 (1992) 249;K.S.雷迪、R.克卢、E.sz.科瓦奇,气相色谱中的成对相互作用。IV.溶质与三氟甲基取代烷烃的相互作用自由焓,《色谱杂志A》673 (1994) 181;K.S.雷迪、R.克卢、E.sz.科瓦奇,气相色谱中的成对相互作用。VI.溶质与伯甲氧基烷烃、氰基烷烃和烷硫醇基团的相互作用自由焓,《色谱杂志A》704 (1995) 387;A.达洛斯、A.西萨克、Z.库尔萨尔、E.sz.科瓦奇,气相色谱中的成对相互作用。VII.溶质与仲醇基团的相互作用自由焓,《色谱杂志A》904 (2000) 211]。显然,在非极性标准中错误的相同数据在这些溶剂中也是错误的。极性溶剂中的校正数据列于补充表中。

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