首页> 中文期刊> 《纳微快报:英文版》 >Perfection of Perovskite Grain Boundary Passivation by Rhodium Incorporation for Efficient and Stable Solar Cells

Perfection of Perovskite Grain Boundary Passivation by Rhodium Incorporation for Efficient and Stable Solar Cells

         

摘要

Organic cation and halide anion defects are omnipresent in the perovskite films,which will destroy perovskite electronic structure and downgrade the properties of devices.Defect passivation in halide perovskites is crucial to the application of solar cells.Herein,tiny amounts of trivalent rhodium ion incorporation can help the nucleation of perovskite grain and passivate the defects in the grain boundaries,which can improve efficiency and stability of perovskite solar cells.Through first-principle calculations,rhodium ion incorporation into the perovskite structure can induce ordered arrangement and tune bandgap.In experiment,rhodium ion incorporation with perovskite can contribute to preparing larger crystalline and uniform film,reducing trap-state density and enlarging charge carrier lifetime.After optimizing the content of 1% rhodium,the devices achieved an efficiency up to 20.71% without obvious hysteresis,from 19.09% of that pristine perovskite.In addition,the unencapsulated solar cells maintain 92% of its initial efficiency after 500 h in dry air.This work highlights the advantages of trivalent rhodium ion incorporation in the characteristics of perovskite solar cells,which will promote the future industrial application.

著录项

  • 来源
    《纳微快报:英文版》 |2020年第9期|P.203-213|共11页
  • 作者单位

    Institute of Advanced Materials and New Energy Technology Engineering Laboratory of Jiangsu Province Nanjing University of Posts and Telecommunications(NUPT) Nanjing 210023 People’s Republic of China;

    Institute of Advanced Materials and New Energy Technology Engineering Laboratory of Jiangsu Province Nanjing University of Posts and Telecommunications(NUPT) Nanjing 210023 People’s Republic of China;

    Institute of Advanced Materials and New Energy Technology Engineering Laboratory of Jiangsu Province Nanjing University of Posts and Telecommunications(NUPT) Nanjing 210023 People’s Republic of China;

    Institute of Advanced Materials and New Energy Technology Engineering Laboratory of Jiangsu Province Nanjing University of Posts and Telecommunications(NUPT) Nanjing 210023 People’s Republic of China;

    Institute of Advanced Materials and New Energy Technology Engineering Laboratory of Jiangsu Province Nanjing University of Posts and Telecommunications(NUPT) Nanjing 210023 People’s Republic of China;

    Institute of Advanced Materials and New Energy Technology Engineering Laboratory of Jiangsu Province Nanjing University of Posts and Telecommunications(NUPT) Nanjing 210023 People’s Republic of China;

    Institute of Advanced Materials and New Energy Technology Engineering Laboratory of Jiangsu Province Nanjing University of Posts and Telecommunications(NUPT) Nanjing 210023 People’s Republic of China;

    Institute of Advanced Materials and New Energy Technology Engineering Laboratory of Jiangsu Province Nanjing University of Posts and Telecommunications(NUPT) Nanjing 210023 People’s Republic of ChinaGuangdong Provincial Key Lab of Nano‑Micro Materials Research School of Chemical Biology and Biotechnology Peking University Shenzhen Graduate School Shenzhen 518055 People’s Republic of China;

    Institute of Advanced Materials and New Energy Technology Engineering Laboratory of Jiangsu Province Nanjing University of Posts and Telecommunications(NUPT) Nanjing 210023 People’s Republic of China;

    Institute of Advanced Materials and New Energy Technology Engineering Laboratory of Jiangsu Province Nanjing University of Posts and Telecommunications(NUPT) Nanjing 210023 People’s Republic of ChinaShaanxi Institute of Flexible Electronics Northwestern Polytechnical University Xi’an 710072 People’s Republic of China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 无机化学;
  • 关键词

    Perovskite solar cells; Grain boundary passivation; Rhodium incorporation;

    机译:钙钛矿太阳能电池;晶界钝化;掺铑;
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