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首页> 外文期刊>Journal of Molecular Liquids >Characterization of heterogeneous interaction in binary mixtures of ethylene glycol oligomer with water, ethyl alcohol and dioxane by dielectric analysis
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Characterization of heterogeneous interaction in binary mixtures of ethylene glycol oligomer with water, ethyl alcohol and dioxane by dielectric analysis

机译:介电分析表征乙二醇低聚物与水,乙醇和二恶烷的二元混合物中的非均相相互作用

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摘要

The associating behaviour of the binary mixtures of ethylene glycol oligomer (EGO), i.e. ethylene glycol (EG), diethylene glycol (DEG) and poly(ethylene glycol)s (PEG200, PEG300, PEG400 and PEG600) with water (W), ethyl alcohol (EA) and 1,4-dioxane (DX) over the entire concentration range at 25 degrees C have been investigated through their accurately measured values of dielectric constant. The static dielectric constant epsilon(o), high frequency limiting dielectric constant epsilon(infinity), dielectric relaxation strength Delta epsilon, excess dielectric parameters epsilon(E)(o) and epsilon(E)(infinity), effective Kirkwood correlation factor g(eff) and corrective correlation factor g(f) of EGO-W, EGO-EA and EGO-DX mixtures were determined to obtain qualitative and quantitative information about the complex formation through H-bond in these systems. Most of the evaluated dielectric parameters of EG and DEG in different 'cosolvents' have different characteristics as compared to the PEG-cosolvent mixture. The observed linear and non-linear behaviour of Delta epsilon against EGO monomer unit mole fraction X confirms the variation in the homogeneous structures in their binary mixtures with concentration variation. Appearance of the maximum in epsilon(E)(o) against X plots indicates that a complex stable adduct is formed in the EGO-W mixtures at stoichiometric ratio 1:1.7 for lower oligomers but this ratio seems to be 1.7:1 for higher EGO molecules, which confirms that the EGO size and chain flexibility affects the complex formation between EGO and W. In case of EG-EA mixture 1:1 stoichiometric ratio form stable adduct whereas for higher EGO-EA, it is 3:1, at EGO monomer unit level. The complex formation behaviour of DEG-EA has entirely different characteristics when compared to the other studied EGO-EA mixtures. Although, 1,4-dioxane has weak polar behaviour dielectric properties of EG-DX and DEG-DX confirm the formation of stable adducts at the stoichiometric ratio 2:1 of EGO monomer unit mole fraction to the DX. For the higher EGO-DX mixtures, stable adduct forms at the stoichiometric ratio 9:1. Except DEG-EA mixtures, the EGO-W and EGO-EA form the complex with reduction in the effective number of dipoles. In EG-DX mixtures, the heterogeneous species form with a large reduction in the effective number of dipoles, which changes as the effective number of dipoles increases with the increase in monomer repeat units of EGO. Further the net electronic polarization in these binary mixtures increases due to heterogeneous interaction over the entire mixing concentration range. (C) 2006 Elsevier B.V. All rights reserved.
机译:乙二醇低聚物(EGO),即乙二醇(EG),二甘醇(DEG)和聚(乙二醇)(PEG200,PEG300,PEG400和PEG600)的二元混合物与水(W),乙基的缔合行为通过精确测量介电常数,研究了乙醇(EA)和1,4-二恶烷(DX)在25摄氏度整个浓度范围内的情况。静态介电常数epsil(o),高频极限介电常数epsilon(无穷大),介电弛豫强度Delta epsilon,多余的介电参数epsilon(E)(o)和epsilon(E)(无穷大),有效柯克伍德相关系数g(确定EGO-W,EGO-EA和EGO-DX混合物的eff)和校正相关因子g(f),以获得有关这些系统中通过H键形成复合物的定性和定量信息。与PEG-助溶剂混合物相比,在不同的“助溶剂”中大多数已评估的EG和DEG介电参数具有不同的特性。观察到的δε对EGO单体单元摩尔分数X的线性和非线性行为证实了其二元混合物中均相结构随浓度变化的变化。相对于X曲线,ε(o)(o)的最大值出现表明,低端低聚物的化学计量比为1:1.7,在EGO-W混合物中形成了复杂的稳定加合物,但高端EGO的这一比率似乎为1.7:1分子,这证实了EGO的大小和链柔性会影响EGO和W之间的复杂形成。对于EG-EA混合物,化学计量比为1:1时会形成稳定的加合物,而对于较高的EGO-EA,在EGO处为3:1单体单元水平。与其他研究的EGO-EA混合物相比,DEG-EA的复杂形成行为具有完全不同的特征。尽管1,4-二恶烷的极性行为较弱,但EG-DX和DEG-DX的确证了在EGO单体单位摩尔比与DX的化学计量比为2:1时形成了稳定的加合物。对于较高的EGO-DX混合物,稳定的加合物以化学计量比9:1形成。除DEG-EA混合物外,EGO-W和EGO-EA形成的复合物降低了偶极子的有效数量。在EG-DX混合物中,异质物质形成时偶极子的有效数量大大减少,随着EGO单体重复单元的增加,偶极子的有效数量增加,其异质性也随之改变。此外,由于在整个混合浓度范围内的异质相互作用,这些二元混合物中的净电子极化增加。 (C)2006 Elsevier B.V.保留所有权利。

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