首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Metastable Solid Phase at the Crystalline-Amorphous Border: The Glacial Phase of Triphenyl Phosphite
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Metastable Solid Phase at the Crystalline-Amorphous Border: The Glacial Phase of Triphenyl Phosphite

机译:结晶 - 无定形边界处的亚稳固相:三苯基磷矿的冰川阶段

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The fragile glass-forming liquid triphenyl phosphite (TPP) melts at 298 K, has a glass transition at about 186 K, and can undergo a first order transition to a metastable, solid, apparently amorphous phase (denoted the glacial phase) at about 230 K. Though apparently amorphous (on the basis of preliminary X-ray data), we have shown that the glacial phase is well described as a plastic crystal composed of nanocrystallites; it is thus not a second liquid or glass nor a poor ordinary molecular crystal. This picture of the glacial phase with its close connection to the supercooled liquid from which it forms is placed in the context of the frustration-limited-domain theory of supercooled liquids, and the glacial phase is associated with the defect-ordered phase predicted by that theory. In examining the applicability of this picture, we carried out extensive experimental studies, many of them by means of NMR at both ambient and high pressures, on the glacial phase and on the dynamics of the transformations to and from this phase.
机译:脆弱的玻璃形成液态三苯基亚磷酸盐(TPP)在298k下熔化,在约186k处具有玻璃化转变,并且可以在约230℃下经历一阶转变至亚稳态的固体,显然是无定形相(表示冰川阶段)约230 K.虽然显然是无定形的(在初步X射线数据的基础上),我们已经表明冰川相对于由纳米晶体构成的塑料晶体描述良好;因此,它不是第二液体或玻璃,也不是普通的分子晶体不良。这种冰川相的图像与其紧密连接到过冷却的液体,其从中燃烧的液体的挫折 - 有限域的透明液体理论的背景下,并且冰川阶段与预测的缺陷有序阶段相关联理论。在研究本幅画的适用性时,我们进行了广泛的实验研究,通过NMR进行了广泛的实验研究,通过NMR在冰川阶段和往返该阶段的变换动态上。

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