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Bistability, hysteresis and fluctuations in adiabatic ensembles of nanoparticles

机译:纳米颗粒绝热集合的双稳态,滞后和波动

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摘要

A presuppositionless thermodynamic analysis of the phase transformations of nanoparticles in an adiabatic enclosure leads to a series of predictions of the transformation behavior. These predictions are perfectly confirmed with experimental results, which have been difficult to be explained until now. The most important predicted and validated phenomena are: (i) a broad range of bistability or hysteresis in the vicinity of the transformation temperature, (ii) the width of this range increases with increasing particle size and with increasing temperature, and (iii) the transformation temperature may be higher than the one for bulk material. As in reality, an experiment can never be performed in an idealized isothermal or adiabatic environment; one always has a mixture of these conditions. This influences the results. The outcome of this analysis explains why different authors report, probably dependent on experimental conditions, widely scattering results.
机译:在绝热外壳中对纳米颗粒的相变进行无前提的热力学分析可得出一系列有关转化行为的预测。实验结果完全证实了这些预测,到目前为止还很难解释。最重要的预测和验证现象是:(i)转变温度附近的双稳性或滞后性范围很广;(ii)该范围的宽度随粒度的增加和温度的升高而增加,以及(iii)转变温度可能高于散装材料的转变温度。实际上,永远不能在理想的等温或绝热环境中进行实验。人们总是混合着这些条件。这会影响结果。分析的结果解释了为什么不同的作者报告(可能取决于实验条件)广泛散布结果的原因。

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