Singh Lokendra P, Murthy S S N
Jawaharlal Nehru University, New Delhi, India.
Phys Chem Chem Phys. 2009 Jul 7;11(25):5110-8. doi: 10.1039/b817964f. Epub 2009 Apr 20.
In the present article, investigations of an unusual two-component (H-) bonded pair, i.e. the cyclohexanol-neopentylglycol system, are reported. The phase I of cyclohexanol (CHXOL) forms a continuous solid solution with the phase I of neopentylglycol (NPGOL). This binary solid solution (S(I)) has been investigated at low temperatures and several concentrations, by means of dielectric spectroscopy and differential scanning calorimetry (DSC). Depending upon the concentration, this phase reveals a glass transition in the temperature range 150-180 K and a pronounced relaxation process identifiable with the so-called primary relaxation process, or alpha-process. The analysis of the various parameters obtained shows an isomorphic relationship between the face-centered cubic phases of both the pure components through a continuous change of parameters. In addition, two sub-T(g) processes (designated as beta-and gamma-) are found. The present observation suggests that the beta-process is probably a Johari-Goldstein relaxation process and the gamma-process is intramolecular in nature. The kinetic freezing of the various dielectric processes has been examined in relation to the T(g) found in the DSC experiments.
在本文中,报道了对一种不寻常的双组分(氢键)对,即环己醇 - 新戊二醇体系的研究。环己醇(CHXOL)的I相与新戊二醇(NPGOL)的I相形成连续固溶体。通过介电谱和差示扫描量热法(DSC),在低温和几种浓度下对这种二元固溶体(S(I))进行了研究。根据浓度不同,该相在150 - 180 K温度范围内呈现玻璃化转变,以及一个可与所谓的主弛豫过程或α - 过程相识别的明显弛豫过程。对所获得的各种参数的分析表明,通过参数的连续变化,两种纯组分的面心立方相之间存在同构关系。此外,还发现了两个低于玻璃化转变温度(T(g))的过程(称为β - 和γ - 过程)。目前的观察结果表明,β - 过程可能是乔哈里 - 戈尔茨坦弛豫过程,而γ - 过程本质上是分子内的。已结合DSC实验中发现的T(g),研究了各种介电过程的动力学冻结情况。