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Ferroelectric, pyroelectric, and piezoelectric properties of a photovoltaic perovskite oxide

机译:光伏钙钛矿氧化物的铁电,热电和压电特性

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摘要

A perovskite solid-solution, (1 -x)KNbO_3-xBaNi_(1/2)Nb_(1/2)O_(3-δ) (KBNNO), has been found to exhibit tunable bandgaps in the visible light energy range, making it suitable for light absorption and conversion applications, e.g., solar energy harvesting and light sensing. Such a common ABO_3-type perovskite structure, most widely used for ferroelectrics and piezoelectrics, enables the same solid-solution material to be used for the simultaneous harvesting or sensing of solar, kinetic, and thermal energies. In this letter, the ferroelectric, pyroelectric, and piezoelectric properties of KBNNO with x = 0.1 have been reported above room temperature. The investigation has also identified the optimal bandgap for visible light absorption. The stoichiometric composition and also a composition with potassium deficiency have been investigated, where the latter has shown more balanced properties. As a result, a remanent polarization of 3.4 /μC/cm~2, a pyroelectric coefficient of 26 μC/m~2K, piezoelectric coefficients d_(33)≈ 23 pC/N and g_(33)~4.1 x 10 ~(-3) Vm/N, and a direct bandgap of 1.48 eV have been measured for the KBNNO ceramics. These results are considered to be a significant improvement compared to those of other compositions (e.g., ZnO and AIN), which could be used for the same applications. The results pave the way for the development of hybrid energy harvesters/sensors, which can convert multiple energy sources into electrical energy simultaneously in the same material.
机译:已经发现钙钛矿固溶体(1-x)KNbO_3-xBaNi_(1/2)Nb_(1/2)O_(3-δ)(KBNNO)在可见光能量范围内表现出可调节的带隙,使得它适用于光吸收和转换应用,例如太阳能收集和光感测。这种常见的ABO_3型钙钛矿结构(最广泛用于铁电和压电)使相同的固溶材料可用于同时收集或感测太阳能,动能和热能。在这封信中,据报道在室温以上,KBNNO的铁电,热电和压电特性x = 0.1。研究还确定了可见光吸收的最佳带隙。已经研究了化学计量组成以及钾缺乏的组成,后者显示出更加平衡的性能。结果,剩余极化度为3.4 /μC/ cm〜2,热电系数为26μC/ m〜2K,压电系数d_(33)≈23 pC / N,g_(33)〜4.1 x 10〜(- 3)已测量KBNNO陶瓷的Vm / N和1.48 eV的直接带隙。与可以用于相同应用的其他组合物(例如ZnO和AIN)相比,这些结果被认为是一项重大改进。结果为混合能源采集器/传感器的开发铺平了道路,该混合器可以在同一材料中同时将多种能源转换为电能。

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  • 来源
    《Applied Physics Letters》 |2017年第6期|063903.1-063903.5|共5页
  • 作者单位

    Microelectronics Research Unit, Faculty of Information Technology and Electrical Engineering, University of Oulu, FI-90014 Oulu, Finland;

    Microelectronics Research Unit, Faculty of Information Technology and Electrical Engineering, University of Oulu, FI-90014 Oulu, Finland;

    Microelectronics Research Unit, Faculty of Information Technology and Electrical Engineering, University of Oulu, FI-90014 Oulu, Finland;

    Microelectronics Research Unit, Faculty of Information Technology and Electrical Engineering, University of Oulu, FI-90014 Oulu, Finland;

    Microelectronics Research Unit, Faculty of Information Technology and Electrical Engineering, University of Oulu, FI-90014 Oulu, Finland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:14:00

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