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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Universal Size Dependence of Integral Enthalpy and Entropy for Solid-Solid Phase Transitions of Nanocrystals
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Universal Size Dependence of Integral Enthalpy and Entropy for Solid-Solid Phase Transitions of Nanocrystals

机译:纳米晶体固体相转变的整体焓和熵的通用尺寸依赖性

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There is a significant effect of particle size on the solid solid phase transition of nanocrystals, but the precise relations of integral enthalpy and entropy of phase transition with particle size have not been reported. In this paper, we deduced the fundamental equations of the integral enthalpy and entropy of solid solid phase transitions for nanocrystals with different particle sizes, respectively. These universal and precise thermodynamic relations, free of any adjustable parameter, can precisely describe the real process of phase transition. Experimentally, we researched the phase transition from tetragonal to cubic of nano-PbTiO3 with different diameters (24.8, 35.6, 41.9, 54.2, 63.7, and 70.1 nm). The regularities obtained from these experiments were consistent with the theoretical relations. There were linear relations between the integral enthalpy and entropy of solid solid phase transition and the reciprocal of size of nanocrystals as the radius exceeds 10 nm. Our thermodynamic relations and the quantitative size-dependent regularities of solid solid phase transition can provide references for explaining and confirming the solid solid phase transitions involved in the real processes of preparation and application of nanocrystals.
机译:颗粒尺寸对纳米晶体的固体固相转变存在显着效果,但尚未报道颗粒尺寸的整体焓和熵的细能焓和熵的精确关系。在本文中,我们分别推导出具有不同颗粒尺寸的纳米晶体的整体固相转变的整体焓和熵的基本方程。这些通用和精确的热力学关系,无任何可调节参数,可以精确描述相变的实际过程。通过实验,我们研究了从四边形到立方体的纳米PBTIO3的相变,不同直径(24.8,35.6,41.9,54.2,63.7和70.1nm)。从这些实验中获得的规则与理论关系一致。在固体固相转变的整体焓和熵之间存在线性关系,并且随着半径超过10nm的纳米晶体的倾斜偏转。我们的热力学关系和固体固相转变的定量依赖性规则可以提供参考解释和确认参与纳米晶体的实际过程中涉及的固体固相转变的参考。

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