首页> 中文期刊> 《纳微快报:英文版》 >Spray Pyrolyzed TiO2 Embedded Multi-Layer Front Contact Design for High-Efficiency Perovskite Solar Cells

Spray Pyrolyzed TiO2 Embedded Multi-Layer Front Contact Design for High-Efficiency Perovskite Solar Cells

         

摘要

The photovoltaic performance of perovskite solar cells(PSCs)can be improved by utilizing efficient front contact.However,it has always been a significant challenge for fabricating high-quality,scalable,controllable,and cost-effective front contact.This study proposes a realistic multi-layer front contact design to realize efficient single-junction PSCs and perovskite/perovskite tandem solar cells(TSCs).As a critical part of the front contact,we prepared a highly compact titanium oxide(TiO2)film by industrially viable Spray Pyrolysis Deposition(SPD),which acts as a potential electron transport layer(ETL)for the fabrication of PSCs.Optimization and reproducibility of the TiO2 ETL were discreetly investigated while fabricating a set of planar PSCs.As the front contact has a significant influence on the optoelectronic properties of PSCs,hence,we investigated the optics and electrical effects of PSCs by three-dimensional(3D)finite-difference time-domain(FDTD)and finite element method(FEM)rigorous simulations.The investigation allows us to compare experimental results with the outcome from simulations.Furthermore,an optimized single-junction PSC is designed to enhance the energy conversion efficiency(ECE)by>30% compared to the planar reference PSC.Finally,the study has been progressed to the realization of all-perovskite TSC that can reach the ECE,exceeding 30%.Detailed guidance for the completion of high-performance PSCs is provided.

著录项

  • 来源
    《纳微快报:英文版》 |2021年第2期|P.262-278|共17页
  • 作者单位

    Nanomaterials Research Institute(NanoMaRi) Kanazawa University Kakuma Kanazawa 920-1192 JapanResearch Institute of Science and Technology Tokai University Kitakaname Hiratsuka 259-1292 Japan;

    Department of Applied Physics and Materials Research Center The Hong Kong Polytechnic University Hung Hom Kowloon Hong Kong P.R.ChinaDepartment of Materials Science and Engineering City University of Hong Kong Kowloon Hong Kong P.R.China;

    Graduate School of Engineering Tokai University Kitakaname Hiratsuka 259-1292 Japan;

    Graduate School of Engineering Tokai University Kitakaname Hiratsuka 259-1292 Japan;

    Department of Applied Physics and Materials Research Center The Hong Kong Polytechnic University Hung Hom Kowloon Hong Kong P.R.China;

    Department of Modern Mechanical Engineering Waseda University 3-4-1 Okubo Shinjuku Tokyo 169-8555 Japan;

    Department of Chemistry School of Science Tokai University Kitakaname Hiratsuka 259-1292 Japan;

    Research Institute of Science and Technology Tokai University Kitakaname Hiratsuka 259-1292 JapanGraduate School of Engineering Tokai University Kitakaname Hiratsuka 259-1292 Japan;

    Geballe Laboratory for Advanced Materials Department of Materials Science and Engineering Stanford University Stanford USA;

    Department of Applied Physics and Materials Research Center The Hong Kong Polytechnic University Hung Hom Kowloon Hong Kong P.R.China;

    Solar Energy Research Institute The National University of Malaysia 43600 Bangi Selangor Malaysia;

    Nanomaterials Research Institute(NanoMaRi) Kanazawa University Kakuma Kanazawa 920-1192 JapanDepartment of Physics Engineering Physics and Astronomy Queens University Kingston ON Canada;

    Nanomaterials Research Institute(NanoMaRi) Kanazawa University Kakuma Kanazawa 920-1192 Japan;

    Department of Chemistry School of Science Tokai University Kitakaname Hiratsuka 259-1292 Japan;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 计算技术、计算机技术;
  • 关键词

    Perovskite; Tandem solar cells; Spray pyrolysis deposition; TiO2 compact layer; Optics and optimization; Electrical characteristic;

    机译:Perovskite;串联太阳能电池;喷雾热解沉积;TiO2紧凑层;光学和优化;电特性;
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