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首页> 外文期刊>Solar Energy >Enhance the performance of dye-sensitized solar cells by constructing upconversion-core/semiconductor-shell structured NaYF_4∶Yb,Er @BiOCl microprisms
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Enhance the performance of dye-sensitized solar cells by constructing upconversion-core/semiconductor-shell structured NaYF_4∶Yb,Er @BiOCl microprisms

机译:通过构建上变芯/半导体 - 壳结构的Nayf_4 :YB,ER @biocl微胶体来增强染料敏化太阳能电池的性能

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摘要

Upconversion spectral converters enable the utilization of infrared photons for dye-sensitized solar cells. However, the TiO2 photoanode photoelectron trapping loss caused by defects and ligands on upconversion material surface limits the dye-sensitized solar cells efficiency. Here, we separate spatially TiO2 particles and upconverters through crafting an uniform semiconductor BiOCl shell onto NaYF4:Yb3+,Er3+ upconverters surface by a hydrothermal method. Unlike common insulate SiO2 shells, the BiOCl shell decreases little the upconversion luminescence intensity from the upconversion core, but it can inhibit the photoelectron transfer from TiO2 to upconversion particles due to its higher conduction band position than that of TiO2, which eliminates the photoelectron trapping loss. In addition, the BiOCl shell can harvest 408 nm photons from upconversion cores to generate additional photoelectrons into TiO2 photoanode film. Consequently, the incorporation of upconversioncore/semiconductor-shell structured particles into TiO2 photoanodes of dye-sensitized solar cells achieves 29.8% increase of power conversion efficiency, whereas bare upconversion particles only get 11.9% increase as compared with dye-sensitized solar cells with pure TiO2 photoanodes. We quantify that among the relative efficiency increase by the incorporation of upconversion-core/semiconductor-shell particles: 17.2% from the reduced photoelectron trapping and the harvest of upconversion 408 nm photons by BiOCl shell, 4.9% from the green and red upconversion of near infrared photons, and 7.7% from the scattering effect of the designed spectral upconverters.
机译:上变频转换器能够利用红外光子用于染料敏化太阳能电池。然而,由上变化材料表面上的缺陷和配体引起的TiO2光电码光电诱捕损失限制了染料敏化的太阳能电池效率。这里,我们通过水热法将均匀的半导体BioCl壳与Nayf4:YB3 +,ER3 +上逆变器表面分离到Nayf4:YB3 +,ER3 +上方的均匀半导体BioCl壳中,将空间上TiO 2颗粒和上变逆器分离。与常见的绝缘SiO 2壳不同,BioCl壳从上变芯下降少,但由于其更高的传导带位置,它可以抑制从TiO2到上变颗粒的光电元件,这消除了光电诱捕损耗。另外,BioCl壳可以从上转换芯中收获408nm光子,以产生额外的光电子进入TiO 2光电膜。因此,将上转换核/半导体 - 壳结构颗粒掺入染料敏化太阳能电池的TiO 2光电池中的功率转换效率提高29.8%,而裸升高颗粒与纯TiO2的染料敏化太阳能电池相比仅达到11.9%。 photoanode。我们通过掺入上变核/半导体 - 壳颗粒的掺入相对效率的相对效率增加:17.2%,从降低的光电子捕获和通过Biocl壳收获的升高408nm光子,从近的绿色和红色上变化的4.9%红外光子和7.7%从设计的光谱上变频器的散射效果。

著录项

  • 来源
    《Solar Energy》 |2021年第8期|563-568|共6页
  • 作者单位

    Harbin Inst Technol Sch Mat Sci & Engn Harbin Peoples R China|Harbin Inst Technol Sch Chem & Chem Engn MIIT Key Lab Crit Mat Technol New Energy Convers Harbin 150001 Peoples R China;

    Harbin Inst Technol Sch Chem & Chem Engn MIIT Key Lab Crit Mat Technol New Energy Convers Harbin 150001 Peoples R China;

    Harbin Inst Technol Sch Chem & Chem Engn MIIT Key Lab Crit Mat Technol New Energy Convers Harbin 150001 Peoples R China;

    Harbin Inst Technol Sch Chem & Chem Engn MIIT Key Lab Crit Mat Technol New Energy Convers Harbin 150001 Peoples R China;

    Univ Elect Sci & Technol China Chengdu Sch Phys Chengdu 611731 Sichuan Peoples R China;

    Harbin Inst Technol Sch Mat Sci & Engn Harbin Peoples R China;

    Harbin Inst Technol Sch Chem & Chem Engn MIIT Key Lab Crit Mat Technol New Energy Convers Harbin 150001 Peoples R China|Harbin Inst Technol State Key Lab Urban Water Resource & Environm Harbin Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Upconversion; Dye-sensitized solar cells; Upconversion core; semiconductor shell; structure; Photoelectron trapping;

    机译:上转换;染料敏化太阳能电池;上变芯;半导体壳;结构;光电子捕获;

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