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蒸汽辅助溶液过程制备钙钛矿材料及钙钛矿太阳能电池 被引量:3

Preperation of perovskite materials and perovskite solar cells by vapor-assisted solution process
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摘要 有机无机杂化钙钛矿材料被广泛应用于光电器件领域,特别是其作为太阳能电池的吸光材料,受到学术界和工业界越来越多的关注。钙钛矿太阳能电池的产业化进程正在进行中,而在进一步降低制备成本、提高电池转换效率的同时,研究出一种操作简单且可重复性高的制备钙钛矿薄膜的技术具有十分重要的意义。与其他传统的溶液处理方法不同,蒸汽辅助溶液过程(VASP)处理法避免了薄膜在生长过程中溶解以及溶剂化作用,抑制了晶核的形成,使薄膜快速重组,获得致密的高质量钙钛矿薄膜。目前报道,基于此薄膜制备的平面结构钙钛矿太阳能电池转换效率高达16.8%。本文综述了低温(<150℃)VASP法制备的钙钛矿薄膜及光伏器件的相关研究进展,并对该技术的产业化前景做了展望。VASP制备过程简单、薄膜性能优异且可重复性高,为进一步制备大面积、高质量薄膜提供了可能。 Hybrid perovskites( e.g.,CH_3NH_3PbX_3,X represents a halide) are attracting more and more attention from both industry and academic due to their widely applications in the field of photoelectric device,especially as light absorption material in solar cells. The process of industrialization of perovskite solar cells is in progress,and in the pursuit of low-cost and efficient perovskite PV technology,it is crucial to develop a facile and high reproducible technique for preparing perovskite films. Unlike other conventional solution treatments,the vapor-assisted solution process( VASP) treatment avoids the dissolution and solvation of the film during growth,inhibits the formation of crystal nucleus and allows rapid recombination of the film to obtain dense high-quality perovskite film. At present,the conversion efficiency of planar structure perovskite solarcells based on this film is reaching up to 16. 8%. In this paper,the research progress of perovskite thin films and photovoltaic devices prepared by low temperature( 〈150 ℃) VASP method is reviewed. This paper also prospects the industrialization of the technology. VASP has the advantages of simple preparation process,excellent performance and high reproducibility,which provides the possibility of further preparation of large-area and high-quality film.
作者 刘娜 樊哲一 任杰灵 刘双 龚士博 周欢萍 陈棋 LIU Na FAN Zhe-yi REN lie-ling LIU Shuang GONG Shi-bo ZttOU Huan-ping CHEN Qi(School of Material Science & Engineering, Beijing Institute of Technology, Belting 100081, China Department of Material Science, Peking University, Beijing 100871, China)
出处 《中国光学》 EI CAS CSCD 2017年第5期568-577,共10页 Chinese Optics
基金 国家自然科学基金项目(No.51673025)~~
关键词 杂化钙钛矿 蒸汽辅助溶液过程 太阳能电池 光伏 hybrid perovskite vapor-assisted solution process solar cell photovoltaics
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  • 1高军武,陶崇勃.国内外太阳能光伏产业市场状况与发展趋势[J].电气技术,2009,10(8):89-92. 被引量:16
  • 2张伯泉,杨宜民.风力和太阳能光伏发电现状及发展趋势[J].中国电力,2006,39(6):65-69. 被引量:121
  • 3HUANG X Q, TANG S H, MU X L, et al.. Freestanding palladium nanosheets with plasmonic and catalytic properties[J]. Nat. Nanotechnol, 2011, 6:28-32.
  • 4KABASHIN A V, EVANS P, PASTKOVSKY S, et al.. Plasmonic nanorod metamaterials for biosensing, plasmonic-metal nanostructures for efficient conversion of solar to chemical energy[J]. Nat. Mater., 2009, 8:867-871.
  • 5LI H B, LI F Y, HAN C P, et al.. Highly sensitive and selective tryptophan colorimetric sensor based on 4, 4-bipyridine-functionalized silver nanoparticles[J]. Sens Actuat B Chem., 2009, 145:194.
  • 6TIAN Y, SHI X, LU C Q, et al.. Charge separation in solid-state gold nanoparticles-sensitized photovoltaic cell[J]. Electrochem. Commun., 2009, 11:1603-1605.
  • 7CUEVAS-MUNIZ F M, GUERRA-BALCAZAR M, CASTANEDA F, et al.. Performance of Au and AuAg nanoparticles supported on Vulcan in a glucose laminar membraneless microfuel cell[J]. J. Power Sources, 2011, 196:5853.
  • 8LU Y Z, WANG Y C, CHEN W. Silver nanorods for oxygen reduction:strong effects of protecting ligand on the electrocatalytic activity[J]. J. Power Sources, 2011, 196:3033.
  • 9ZHOU H Q, QIU C Y, YU F, et al.. Thickness-dependent morphologies and surface-enhanced raman scattering of Ag deposited on n-Layer graphenes[J]. J. Phys. Chem. C, 2011, 115:11348-11354.
  • 10NIU B J, WU L L, TANG W, et al.. Enhancement of near-band edge emission of Au/ZnO composite nanobelts by surface plasmon resonance[J]. Cry. Steng. Comm., 2011, 13:3678-3681.

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