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Manganese-based layered perovskite solid-solid phase change material: Synthesis, characterization and thermal stability study

机译:锰基钙钛矿层状固固相变材料的合成,表征和热稳定性研究

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摘要

In this paper, a new class of Manganese based Layered Perovskite Solid Solid Phase Change Materials (1-C9H19NH3)(2)MnCl4 and (1-C10H21NH3)(2)MnCl4 (SS-PCM) were synthesized by a liquid phase reaction method, and the effect of thermal cycling was compared for 0, 500, 1000 cycles. The crystal morphology, elemental compositions, thermal degradation, and phase transition phenomena were characterized and compared. It was noted from DSC that the phase transition temperatures and enthalpies upon heating and cooling for (1-C9H19NH3)(2)MnCl4 is 293.80 K, 64.75 kJ/kg, and 285.57 K, 65.49 kJ/kg, and for (1-C10H21NH3)(2)MnCl4 is 311.54 K, 73.83 kJ/kg, and 304.24 K, 79.79 kJ/kg, respectively. During the transition period, the synthesized material possesses increased thermal conductivity and thermal diffusivity which eliminates the need for thermal conductivity enhancers. Additionally, we found through characterization that the SS-PCMs were thermally and chemically stable for around 1000 cycles because of the presence of the metal substrate. Hence, the synthesized SS-PCMs are desirable for various low-temperature thermal energy storage applications.
机译:本文通过液相反应法合成了新型的锰基层状钙钛矿固体固相变材料(1-C9H19NH3)(2)MnCl4和(1-C10H21NH3)(2)MnCl4(SS-PCM),比较了0、500、1000个循环的热循环效果。表征并比较了晶体形态,元素组成,热降解和相变现象。从DSC注意到,(1-C9H19NH3)(2)MnCl4加热和冷却时的相变温度和焓分别为293.80 K,64.75 kJ / kg和285.57 K,65.49 kJ / kg,以及(1-C10H21NH3 )(2)MnCl4分别为311.54 K,73.83 kJ / kg和304.24 K,79.79 kJ / kg。在过渡期间,合成材料具有增加的导热率和热扩散率,从而消除了对导热率增强剂的需求。另外,我们通过表征发现,由于存在金属基底,SS-PCM在约1000个循环中具有热稳定性和化学稳定性。因此,合成的SS-PCM对于各种低温热能存储应用是合乎需要的。

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