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Nanoquartz vs. macroquartz: a study of the α <-> β phase transition

机译:纳米石英与大石英:α<->β相变的研究

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摘要

The first-order character of the α <-> β transition in micron-size quartz is shown to be strongly reduced in natural nano-size quartz with no significant variation of the transition temperature. Three different experimental techniques (differential scanning calorimetry, X-ray diffraction and second-harmonic generation) are applied on natural nano-size quartz to evaluate the variation of the character of the transition. The excess entropy of nano-size quartz is described in the framework of Landau theory. The renormalization of the fourth-order term is explained to arise from the elastic 3D-clamping imposed on each grain by the surrounding nanocrystallites. The presence of hydrous species and inhomogeneous internal stress due to the growth process are considered as well in the interpretation. The anomalous increase in the linewidth of diffraction maxima at the transition temperature is related to surface relaxation phenomena.
机译:微米级石英中的α<->β跃迁的一级特征显示出在天然纳米级石英中被大大降低,而转变温度没有明显变化。三种不同的实验技术(差示扫描量热法,X射线衍射和二次谐波产生)应用于天然纳米尺寸石英,以评估过渡特性的变化。在Landau理论的框架中描述了纳米级石英的过量熵。解释了四阶项的重新归一化是由周围的纳米晶体施加在每个晶粒上的弹性3D夹持引起的。解释中还考虑了水合物种的存在以及由于生长过程而导致的内部不均匀应力。转变温度下最大衍射线宽的异常增加与表面弛豫现象有关。

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