跳至主導覽 跳至搜尋 跳過主要內容

Facile synthesis of spiro-core-based hole-transporting material for high-performance and stable perovskite solar cells

  • Kun Mu Lee*
  • , Seid Yimer Abate
  • , June Hung Yang
  • , Wei-Hao Chiu
  • , Seoungjun Ahn
  • , Sie Rong Li
  • , Kang Ling Liau
  • , Yu Tai Tao
  • , Yan Duo Lin
  • *此作品的通信作者
  • Academia Sinica - Institute of Chemistry
  • Soochow University Taiwan
  • Chang Gung University
  • National Central University

研究成果: 期刊稿件文章同行評審

33 引文 斯高帕斯(Scopus)

摘要

Two new spirocore-based hole-transporting materials (HTMs), spiro-1 and spiro-2, with 5H-spiro(benzo[1,2-b:6,5-b']dithiophene-4,4′-cyclopenta[2,1-b:3,4-b′]dithiophen)-5-one moiety connected with multiple triphenylamine donor substituents are synthesized via two-step synthesis with low cost and simple procedures and used as HTM in perovskite solar cells (PSCs). The correlation between different HTM structures and the performance of the PSCs was investigated systematically. Experiments results on the thermal stability, photophysical, electrochemical, charge-transporting, as well as film-forming properties show that spiro-1 and spiro-2 are suitable candidate as HTMs for PSCs. The fabricated PSCs with spiro-1 and spiro-2 as HTMs achieved an excellent power conversion efficiency (PCE) of 21.67 % and 19.65 % respectively, both with negligible hysteresis. The obtained PCE of 21.67 % based on spiro-1 is higher than that of the reference solar cell using traditional HTM of spiroOMeTAD (20.59 %) under the same conditions. It may be ascribed to the higher hole mobility, the more efficient hole extraction at the HTM/perovskite interface, the better film morphology. Moreover, the devices based on the new HTM showed good long-term stability and maintained over 80 % of their initial efficiency under continuous stressing at 85 °C and light illumination at 50 °C for 500 h in air without any encapsulation, which were superior to that of spiroOMeTAD. This work demonstrates that the newly developed spirofused molecules are promising HTMs for highly efficient and stable PSCs for the future commercialization of PSCs.

原文英語
文章編號139926
期刊Chemical Engineering Journal
454
DOIs
出版狀態已出版 - 15 02 2023

文獻附註

Publisher Copyright:
© 2022 Elsevier B.V.

UN SDG

此研究成果有助於以下永續發展目標

  1. SDG7 可負擔能源
    SDG7 可負擔能源

指紋

深入研究「Facile synthesis of spiro-core-based hole-transporting material for high-performance and stable perovskite solar cells」主題。共同形成了獨特的指紋。

引用此