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What Xe nanocrystals in Al can teach us in materials science

机译:Al中的Xe Nanocrystals可以教我们在材料科学中

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Noble gases are generally very insoluble in solids. For example, Xe implanted into M at 300 K forms a fine dispersion of crystalline precipitates and, at large enough fluence, fluid precipitates, both of which are stabilized, relative to the gas phase, by the Laplace pressure due to precipitate/matrix interface tensions. High resolution electron microscopy has been performed to determine the largest Xe nanocrystalline precipitate in local equilibrium with fluid Xe precipitates within the Al matrix. From the shape and size of the largest crystal and the Laplace pressure associated with its interface, we show that the interface tensions can be derived by setting the Laplace pressure equal to the pressure for solid/fluid Xe equilibrium derived from bulk Xe compression isotherms at the temperature of equilibration and observation. The Xe/Al interface tensions thus derived are in the range of accepted values of surface tensions for the Al matrix. Furthermore, it is suggested that this same technique may be employed to estimate unknown surface tensions of a solid matrix from the size and shape of maximal nanocrystals of a noble gas element, which have been equilibrated in that matrix at the temperature of observation.
机译:惰性气体通常非常不溶于固体。例如,将XE植入为300k,形成结晶沉淀物的精细分散液,并且在足够大的电量下,流体沉淀,两者均匀,相对于气相稳定,通过拉普拉斯界面引起的沉淀/基质界面张力。已经进行了高分辨率电子显微镜检查以确定局部平衡中的最大XE纳米晶体沉淀物,其中流体XE沉淀在Al基质中。从最大晶体的形状和尺寸和与其界面相关的拉普拉斯压力,我们表明,通过将拉普拉斯XE平衡的压力设定为散装XE压缩等温线的固体/流体XE平衡压力,可以推导出界面张力。温度和观察。由此导出的XE / Al界面张力在Al基质的表面张力的接受值范围内。此外,建议可以采用这种相同的技术来估计来自惰性气体元件的最大纳米晶体的大小和形状的固体基质的未知表面张力,该惰性气体元件在该基质中在观察温度下被平衡。

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