首页> 外文OA文献 >Large Energy Storage Density and High Thermal Stability in a Highly Textured (111)-Oriented Pb0.8Ba0.2ZrO3 Relaxor Thin Film with the Coexistence of Antiferroelectric and Ferroelectric Phases
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Large Energy Storage Density and High Thermal Stability in a Highly Textured (111)-Oriented Pb0.8Ba0.2ZrO3 Relaxor Thin Film with the Coexistence of Antiferroelectric and Ferroelectric Phases

机译:具有反铁电相和铁电相共存的高织构(111)取向的Pb0.8Ba0.2ZrO3弛豫薄膜中的大储能密度和高热稳定性

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摘要

A highly textured (111)-oriented Pb0.8Ba0.2ZrO3 (PBZ) relaxor thin film with the coexistence of antiferroelectric (AFE) and ferroelectric (FE) phases was prepared on a Pt/TiOx/SiO2/Si(100) substrate by using a sol-gel method. A large recoverable energy storage density of 40.18 J/cm3 along with an efficiency of 64.1% was achieved at room temperature. Over a wide temperature range of 250 K (from room temperature to 523 K), the variation of the energy density is within 5%, indicating a high thermal stability. The high energy storage performance was endowed by a large dielectric breakdown strength, great relaxor dispersion, highly textured orientation, and the coexistence of FE and AFE phases. The PBZ thin film is believed to be an attractive material for applications in energy storage systems over a wide temperature range (Graph Presented).
机译:在Pt / TiOx / SiO2 / Si(100)衬底上制备了具有反铁电(AFE)和铁电(FE)相共存的高织构(111)取向的Pb0.8Ba0.2ZrO3(PBZ)弛豫薄膜溶胶-凝胶法。在室温下可实现40.18 J / cm3的大可回收能量存储密度以及64.1%的效率。在250 K的宽温度范围内(从室温到523 K),能量密度的变化在5%以内,表明具有很高的热稳定性。高的储能性能归因于大的介电击穿强度,大的弛豫分散度,高度的织构取向以及FE和AFE相的共存。 PBZ薄膜被认为是在宽温度范围内应用于储能系统中的一种有吸引力的材料。

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