Organic solar cells with near 100% efficiency retention after initial burn-in loss and photo-degradation

被引:14
作者
Upama, Mushfika Baishakhi [1 ]
Elumalai, Naveen Kumar [1 ]
Mahmud, Md Arafat [1 ]
Sun, Heng [1 ]
Wang, Dian [1 ]
Chan, Kah Howe [1 ]
Wright, Matthew [1 ]
Xu, Cheng [1 ]
Uddin, Ashraf [1 ]
机构
[1] Univ New South Wales, Sch Photovolta & Renewable Energy Engn, Sydney, NSW 2052, Australia
关键词
Burn-in; PTB7; AZO; ZnO; Work function; Impedance spectroscopy; Stability; Organic solar cell; DOPED ZINC-OXIDE; THIN-FILMS; ZNO; DEGRADATION; PERFORMANCE; LAYER; AL; FABRICATION; COLLECTION; 10-PERCENT;
D O I
10.1016/j.tsf.2017.05.031
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this article, we attempt to demonstrate a way of tackling one of the biggest challenges in the path of commercialization of organic solar cells, the initial photo-degradation of the cells known as "burn-in". The "burn-in" phenomenon is most prominent during the first few hours of device operation under illumination and responsible for losing 25% or more fraction of the initial efficiency. To address this major issue, we have studied photo degradation of inverted organic solar cells with plain Zinc Oxide (ZnO) and Aluminum doped ZnO (AZO) as an electron transport layer over a short time period of 5 h during which the degradation is most severe. The study has been done on two different device structures containing both crystalline and amorphous polymers (Poly(3-hexylthiophene- 2,5-diyl) and Poly({4,8-bis[(2-ethylhexyl) oxy] benzo[1,2-b: 4,5-b'] dithiophene-2,6-diyl}{3-fluoro2-[(2 ethylhexyl) carbonyl] thieno[3,4-b] thiophenediyl}), respectively). Application of an AZO layer as the electron transport layer resolves the issue of photo-degradation in both cases, regardless of the polymer used in the active layer. AZO layer is found to provide less charge accumulation and better charge extraction at cathode/active layer interface. Mott-Schottky analysis shows modification of cathode interfacial layer work function and enhancement of open-circuit voltage due to the introduction of doped ZnO as electron transport layer. The exaltation persists even after the ageing of the devices. The devices with AZO layer retain their initial efficiency (almost 100%) even after photo-degradation while the device with pristine ZnO layer loses up to 60% of the initial efficiency. (C) 2017 Elsevier B.V. All rights reserved.
引用
收藏
页码:127 / 136
页数:10
相关论文
共 51 条
  • [31] Built-in potential and validity of the Mott-Schottky analysis in organic bulk heterojunction solar cells
    Mingebach, M.
    Deibel, C.
    Dyakonov, V.
    [J]. PHYSICAL REVIEW B, 2011, 84 (15)
  • [32] Comparison of various sol-gel derived metal oxide layers for inverted organic solar cells
    Oh, Hyunchul
    Krantz, Johannes
    Litzov, Ivan
    Stubhan, Tobias
    Pinna, Luigi
    Brabec, Christoph J.
    [J]. SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2011, 95 (08) : 2194 - 2199
  • [33] Ouyang XH, 2015, NAT PHOTONICS, V9, P520, DOI [10.1038/NPHOTON.2015.126, 10.1038/nphoton.2015.126]
  • [34] The Mechanism of Burn-in Loss in a High Efficiency Polymer Solar Cell
    Peters, Craig H.
    Sachs-Quintana, I. T.
    Mateker, William R.
    Heumueller, Thomas
    Rivnay, Jonathan
    Noriega, Rodigo
    Beiley, Zach M.
    Hoke, Eric T.
    Salleo, Alberto
    McGehee, Michael D.
    [J]. ADVANCED MATERIALS, 2012, 24 (05) : 663 - +
  • [35] Enhanced Ultraviolet Stability of Air-Processed Polymer Solar Cells by Al Doping of the ZnO Interlayer
    Prosa, Mario
    Tessarolo, Marta
    Bolognesi, Margherita
    Margeat, Olivier
    Gedefaw, Desta
    Gaceur, Meriem
    Videlot-Ackermann, Christine
    Andersson, Mats R.
    Muccini, Michele
    Seri, Mirko
    Ackermann, Joerg
    [J]. ACS APPLIED MATERIALS & INTERFACES, 2016, 8 (03) : 1635 - 1643
  • [36] High efficiency PTB7-based inverted organic photovoltaics on nano-ridged and planar zinc oxide electron transport layers
    Richardson, Beau J.
    Wang, Xuezhen
    Almutairi, Abdulrahman
    Yu, Qiuming
    [J]. JOURNAL OF MATERIALS CHEMISTRY A, 2015, 3 (10) : 5563 - 5571
  • [37] Efficient photovoltaic energy conversion in pentacene-based heterojunctions
    Schön, JH
    Kloc, C
    Batlogg, B
    [J]. APPLIED PHYSICS LETTERS, 2000, 77 (16) : 2473 - 2475
  • [38] Fabrication of bulk heterojunction plastic solar cells by screen printing
    Shaheen, SE
    Radspinner, R
    Peyghambarian, N
    Jabbour, GE
    [J]. APPLIED PHYSICS LETTERS, 2001, 79 (18) : 2996 - 2998
  • [39] 2.5% efficient organic plastic solar cells
    Shaheen, SE
    Brabec, CJ
    Sariciftci, NS
    Padinger, F
    Fromherz, T
    Hummelen, JC
    [J]. APPLIED PHYSICS LETTERS, 2001, 78 (06) : 841 - 843
  • [40] Inverted organic solar cells using a solution processed aluminum-doped zinc oxide buffer layer
    Stubhan, Tobias
    Oh, Hyunchul
    Pinna, Luigi
    Krantz, Johannes
    Litzov, Ivan
    Brabec, Christoph J.
    [J]. ORGANIC ELECTRONICS, 2011, 12 (09) : 1539 - 1543