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Outstanding Performance of Hole-Blocking Layer-Free Perovskite Solar Cell Using Hierarchically Porous Fluorine- Doped Tin Oxide Substrate

机译:使用分层多孔氟掺杂氧化锡衬底的无空穴阻挡层钙钛矿太阳能电池的出色性能

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摘要

Perovskite solar cells (PSCs) are of great interest in current photovoltaic research due to their extraordinary power conversion efficiency of approximate to 20% and boundless potentialities. The high efficiency has been mostly obtained from TiO2-based PSCs, where TiO2 is utilized as a hole-blocking, mesoporous layer. However, trapped charges and the light-induced photocatalytic effect of TiO2 seriously degrade the perovskite and preclude PSCs from being immediately commercialized. Herein, a simplified PSC is successfully fabricated by eliminating the problematic TiO2 layers, using instead a fluorine-doped tin oxide (FTO)/perovskite/hole-conductor/Au design. Simultaneously, the sluggish charge extraction at the FTO/perovskite interface is overcome by modifying the surface of the FTO to a porous structure using electrochemical etching. This surface engineering enables a substantial increase in the photocurrent density and mitigation of the hysteretic behavior of the pristine FTO-based PSC; a remarkable 19.22% efficiency with a low level of hysteresis is obtained. This performance is closely approaching that of conventional PSCs and may facilitate their commercialization due to improved convenience, lower cost, greater stability, and potentially more efficient mass production.
机译:钙钛矿太阳能电池(PSC)在当前的光伏研究中备受关注,因为其非凡的功率转换效率约为20%,潜力无限。大部分效率是从基于TiO2的PSC中获得的,其中TiO2被用作空穴阻挡介孔层。但是,捕获的电荷和TiO2的光诱导光催化作用严重降低了钙钛矿的性能,并使PSC不能立即商品化。在此,通过使用氟掺杂的氧化锡(FTO)/钙钛矿/空穴导体/ Au设计来消除有问题的TiO2层,从而成功地制造出简化的PSC。同时,通过使用电化学蚀刻将FTO的表面改性为多孔结构,可以克服FTO /钙钛矿界面上缓慢的电荷提取。这种表面工程技术可以显着提高光电流密度,并减轻基于原始FTO的PSC的磁滞行为。获得了出色的19.22%效率和低滞后性。该性能非常接近常规PSC的性能,并且由于提高了便利性,降低了成本,提高了稳定性并可能提高了批量生产的效率,因此可以促进其商品化。

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  • 来源
    《Advanced energy materials》 |2017年第22期|1700749.1-1700749.9|共9页
  • 作者单位

    Seoul Natl Univ, WCU, Program Chem Convergence Energy & Environm C2E2, Sch Chem & Biol Engn, 599 Gwanangno, Seoul 151742, South Korea;

    Seoul Natl Univ, Dept Biophys & Chem Biol, Seoul 151742, South Korea;

    Seoul Natl Univ, WCU, Program Chem Convergence Energy & Environm C2E2, Sch Chem & Biol Engn, 599 Gwanangno, Seoul 151742, South Korea;

    Seoul Natl Univ, WCU, Program Chem Convergence Energy & Environm C2E2, Sch Chem & Biol Engn, 599 Gwanangno, Seoul 151742, South Korea;

    Seoul Natl Univ, WCU, Program Chem Convergence Energy & Environm C2E2, Sch Chem & Biol Engn, 599 Gwanangno, Seoul 151742, South Korea;

    Seoul Natl Univ, WCU, Program Chem Convergence Energy & Environm C2E2, Sch Chem & Biol Engn, 599 Gwanangno, Seoul 151742, South Korea;

    Seoul Natl Univ, Dept Biophys & Chem Biol, Seoul 151742, South Korea;

    Seoul Natl Univ, Dept Biophys & Chem Biol, Seoul 151742, South Korea;

    Seoul Natl Univ, WCU, Program Chem Convergence Energy & Environm C2E2, Sch Chem & Biol Engn, 599 Gwanangno, Seoul 151742, South Korea;

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  • 正文语种 eng
  • 中图分类
  • 关键词

    electrochemical etching; FTO modification; hole-blocking layer free; increase of interface area; perovskite solar cells;

    机译:电化学刻蚀;FTO修饰;无空穴层;界面面积增加;钙钛矿太阳能电池;

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