重要日期
  • 會(huì)議注冊(cè)截止
    2023年5月15日
  • 論文投稿截止
    2023年3月31日
  • 提前繳費(fèi)優(yōu)惠截止
    2023年4月30日
  • 首頁 > 線上墻報(bào)
    Wide-Bandgap Perovskite Solar Cell Using a Fluoride-Assisted Surface Gradient Passivation Strategy
    高巖 武曉君 劉生忠*

    分會(huì)

    第五十分會(huì):納米體系理論與模擬

    摘要

    Wide-bandgap (1.68 eV) perovskite solar cells (PSCs) are important components of perovskite/Si tandem devices. However, the efficiency of wide bandgap PSCs has been limited by their huge open-circuit voltage (VOC) deficit due to non-radiative recombination. Deep-level acceptor defects are identified as the major killers of VOC, and they can be effectively improved by passivation with ammonium salts. Theoretical calculation predicts that increasing the distance between F and -NH3+ of fluorinated ammonium can dramatically enhance the electropositivity of -NH3+ terminals, thus providing strong adsorption onto the negatively charged IA and IPb anti-site defects. Characterizations further confirm that surface gradient passivation employing p-FPEAI demonstrates the most efficient passivation effect. Consequently, a record-efficiency of 21.63% with the smallest VOC deficit of 441 mV is achieved for 1.68 eV-bandgap inverted PSCs. Additionally, a flexible PSC and 1 cm2 opaque device also deliver the highest PCEs of 21.02% and 19.31%, respectively.

    關(guān)鍵詞

    缺陷;鈣鈦礦;氟化物

    線上墻報(bào)僅限年會(huì)已繳費(fèi)參會(huì)代表觀看。

    您還沒有登錄,請(qǐng)您先 點(diǎn)擊這里登錄