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首页> 外文期刊>Solar Energy >Enhanced photovoltaic response in ferroelectric Ti-doped BFO heterojunction through interface engineering for building integrated applications
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Enhanced photovoltaic response in ferroelectric Ti-doped BFO heterojunction through interface engineering for building integrated applications

机译:通过界面工程改善铁电Ti掺杂BFO异质结的增强光伏响应,用于建立综合应用

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摘要

The transparent nature of photovoltaic (PV) cell can replace the windows and facades in conventionally integrated buildings to harvest energy from natural sunlight and spontaneously generate electric power for various mankind applications. To demonstrate this idea, Ti-doped BiFeO3 (BFTO) lead-free fermelectric material was explored as an active material in Pt/CuCrO2/BFTO/WS2/ITO PV cell where WS2 formed the n-type electron transport material (ETL), an unconventional p-type CuCrO2 was responsible for the hole-transportation (HTL) and bottom ITO and Pt top electrodes, were employed to extract the electrical properties of the device. A single heterojunction PV unit yielded a large short-circuit current density (J(SC)) and an open-circuit voltage (V-OC) of 2.60 mA/cm(2) and 0.95 V, respectively, which resulted in an improved efficiency of 100 orders or more as compared to the plain BFO based PVs. Different structural and absorption studies performed on 5% and 10% Tidoped BFO revealed lower bandgap for 5% (2 eV) and thus higher absorption in visible region. The elevated ferroelectricity in 5% BFTO along with the indispensable driving force offered by ETL and HTL promoted enhanced band bending and thus efficient carrier separation and extraction in the heterostructure. A well-defined band diagram was proposed to explain the PV operating mechanism. For the integration of the transparent PV, a series connection of two 1 x 1 cm PV unit cells has been demonstrated to offer a significant amount of photogenerated voltage. This establishes the prospects of ferroelectric heterojunctions to realize PV power generation sources for emerging electronic applications.
机译:光伏(PV)电池的透明性质可以代替常规综合建筑物中的窗户和外墙,以从天然阳光下收获能量,并自发地为各种人类应用产生电力。为了证明这种想法,探讨了Ti-Doped BifeO3(BFTO)无铅铁物质作为Pt / CuCro2 / BFTO / WS2 / ITO PV电池中的活性材料,其中WS2形成了N型电子传输材料(ETL),非常规P型Cucro2负责空穴 - 运输(HTL)和底部ITO和PT顶电极,用于提取器件的电性能。单个异质结PV单元分别产生大的短路电流密度(J(SC))和2.60mA / cm(2)和0.95V的开路电压(V-OC),这导致效率提高与基于普通的BFO的PVS相比,100个订单或更多。对5%和10%的互操作BFO进行的不同结构和吸收研究显示出5%(2EV)的下带隙,因此在可见区域中吸收较高。在5%bfto中升高的铁电性以及ETL和HTL提供的不可缺少的驱动力促进增强带弯曲,从而有效的载体分离和在异质结构中提取。提出了一种明确的频带图来解释PV操作机制。对于透明PV的集成,已经证明了两种1×1cm PV单元电池的串联连接以提供大量的光发新电压。这建立了铁电异质功能的前景,实现了用于新兴电子应用的光伏发电源。

著录项

  • 来源
    《Solar Energy》 |2021年第9期|863-874|共12页
  • 作者单位

    Birla Inst Technol & Sci BITS Pilani Dept Elect & Elect Engn Hyderabad Campus Hyderabad 500078 Telangana India;

    Birla Inst Technol & Sci BITS Pilani Dept Mech Engn Hyderabad Campus Hyderabad 500078 Telangana India;

    Univ Hyderabad Sch Phys Hyderabad 500046 Telangana India;

    Birla Inst Technol & Sci BITS Pilani Dept Phys Hyderabad Campus Hyderabad 500078 Telangana India;

    Birla Inst Technol & Sci BITS Pilani Dept Phys Hyderabad Campus Hyderabad 500078 Telangana India;

    Univ Hyderabad Sch Phys Hyderabad 500046 Telangana India;

    Birla Inst Technol & Sci BITS Pilani Dept Elect & Elect Engn Hyderabad Campus Hyderabad 500078 Telangana India;

    Birla Inst Technol & Sci BITS Pilani Dept Elect & Elect Engn Hyderabad Campus Hyderabad 500078 Telangana India;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ferroelectricity; Photovoltage; Photocurrent; Heterojunction; Building integration;

    机译:铁电;光伏;光电流;异质结;建筑集成;

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