Institute of Physics, University of Rostock, Albert-Einstein-Str. 23-24, 18051 Rostock, Germany and Competence Centre CALOR, Faculty of Interdisciplinary Research, University of Rostock, Albert-Einstein-Str. 25, 18051 Rostock, Germany.
School of Molecular Sciences, Arizona State University, Tempe, Arizona 85287-1604, USA.
J Chem Phys. 2017 Jul 7;147(1):014502. doi: 10.1063/1.4991006.
Physical vapor deposition has been used to prepare glasses of ethanol. Upon heating, the glasses transformed into the supercooled liquid phase and then crystallized into the plastic crystal phase. The dynamic glass transition of the supercooled liquid is successfully measured by AC nanocalorimetry, and preliminary results for the plastic crystal are obtained. The frequency dependences of these dynamic glass transitions observed by AC nanocalorimetry are in disagreement with conclusions from previously published dielectric spectra of ethanol. Existing dielectric loss spectra have been carefully re-evaluated considering a Debye peak, which is a typical feature in the dielectric loss spectra of monohydroxy alcohols. The re-evaluated dielectric fits reveal a prominent dielectric Debye peak, a smaller and asymmetrically broadened peak, which is identified as the signature of the structural α-relaxation and a Johari-Goldstein secondary relaxation process. This new assignment of the dielectric processes is supported by the observation that the AC nanocalorimetry dynamic glass transition temperature, T, coincides with the dielectric structural α-relaxation process rather than the Debye process. The combined results from dielectric spectroscopy and AC nanocalorimetry on the plastic crystal of ethanol suggest the occurrence of a Debye process also in the plastic crystal phase.
采用物理气相沉积法制备了乙醇玻璃。加热时,玻璃转变为过冷液相,然后结晶为塑料晶体相。通过交流量热法成功测量了过冷液相的动态玻璃化转变,并获得了塑料晶体的初步结果。交流量热法观察到的这些动态玻璃化转变的频率依赖性与之前发表的乙醇介电谱的结论不一致。考虑到德拜峰(单羟基醇介电损耗谱中的典型特征),对现有的介电损耗谱进行了仔细的重新评估。重新评估的介电拟合揭示了一个突出的介电德拜峰,一个较小且不对称展宽的峰,被确定为结构α松弛和 Johari-Goldstein 次级松弛过程的特征。介电过程的这种新分配得到了支持,因为观察到交流量热法动态玻璃化转变温度 T 与介电结构α松弛过程而不是德拜过程重合。对乙醇塑料晶体的介电光谱和交流量热法的综合结果表明,德拜过程也发生在塑料晶体相中。