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Chain Breakage in the Supercooled Liquid - Liquid Transition and Re-entry of the λ-transition in Sulfur

机译:过冷液体中的链断裂-硫中λ转变的液体转变和再进入

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摘要

Amorphous sulfur was prepared by rapid compression of liquid sulfur at temperatures above the λ-transition for to preserve the high-temperature liquid structure. We conducted synchrotron high-energy X-ray diffraction and Raman spectroscopy to diagnose the structural evolution of amorphous sulfur from room temperature to post-λ-transition temperature. Discontinuous changes of the first and second peaks in atomic pair-distribution-function, g(r), were observed during the transition from amorphous to liquid sulfur. The average first-neighbor coordination numbers showed an abrupt drop from 1.92 to 1.81. The evolution of the chain length clearly shows that the transition was accompanied by polymeric chains breaking. Furthermore, a re-entry of the λ-transition structure was involved in the heating process. The amorphous sulfur, which inherits the post-λ-transition structure from its parent melts, transformed to the pre-λ-transition liquid structure at around 391 K. Upon further heating, the pre-λ-transition liquid transformed to a post-λ-transition structure through the well-known λ-transition process. This discovery offers a new perspective on amorphous sulfur’s structural inheritance from its parent liquid and has implications for understanding the structure, evolution and properties of amorphous sulfur and its liquids.
机译:通过在高于转变温度的温度下快速压缩液态硫来制备非晶态硫,以保持高温液态结构。我们进行了同步加速器高能X射线衍射和拉曼光谱分析,以诊断非晶态硫从室温到λ转变后温度的结构演变。在从无定形硫到液态硫的过渡过程中,观察到了原子对分布函数g(r)中第一个和第二个峰的不连续变化。第一邻居的平均协调数从1.92突然下降到1.81。链长的演变清楚地表明过渡伴随着聚合物链断裂。此外,在加热过程中还涉及了λ跃迁结构的再进入。从母体熔体继承了λ转变后结构的无定形硫,在391 K附近转变为λ转变前的液体结构,进一步加热后,λ转变前的液体转变为λ转变后的结构。 -通过众所周知的λ-跃迁过程的-跃迁结构。这一发现为无定形硫从其母体液体继承的结构结构提供了新的视角,并且对理解无定形硫及其液体的结构,演化和性质具有重要意义。

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