首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >High dielectric constant and energy density achieved in sandwich-structured SrTiO3 nanocomposite thick films by interface modulation
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High dielectric constant and energy density achieved in sandwich-structured SrTiO3 nanocomposite thick films by interface modulation

机译:通过界面调制,在夹层结构的SRTIO3纳米复合膜中实现的高介电常数和能量密度

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摘要

An original design of sandwich-structured SrTiO3 (STO) nanocomposite thick films has been achieved via a sol-gel based coating process. In that process, a pure STO amorphous film is set as the central layer and the STO composite films containing nanoparticle fillers and amorphous matrices are employed as two outer layers. It is revealed that the central amorphous layer with optimal thickness can permeate within the composite layer and effectively eliminate the interfacial structural defects (voids and cracks), giving rise to an increased dielectric constant. Additionally, the finite element simulation results show that the design of a sandwich structure is conducive to enhancing the E-b value of the nanocomposite films. It is because the middle amorphous layer could not only alleviate the high local electric field concentration caused by interface voids and cracks, but also lower the electric field in the outer composite layer to protect the sandwich-structured films from being broken down early. As a result, the sandwich-structured films reach the largest energy density of 10 J cm(-3), which increases by 177% compared to the films without interface modulation (3.6 J cm(-3)).
机译:通过溶胶 - 凝胶基涂布方法实现了夹层结构SRTIO3(STO)纳米复合膜的原始设计。在该方法中,将纯的STO非晶膜设定为中心层,并且含有纳米颗粒填料和非晶基质的STO复合膜作为两个外层。揭示了具有最佳厚度的中央非晶层可以在复合层内渗透,有效地消除界面结构缺陷(空隙和裂缝),从而产生增加的介电常数。另外,有限元仿真结果表明,夹层结构的设计有利于提高纳米复合膜的E-B值。这是因为中间非晶层不仅可以减轻界面空隙和裂缝引起的高局部电场集中,而且还降低了外复合层中的电场,以保护夹层结构薄膜早期分解。结果,夹层结构薄膜达到10J厘米(-3)的最大能量密度,与没有界面调制的薄膜相比增加177%(3.6J厘米(-3))。

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