Graphene quantum dots optimization of dye-sensitized solar cells

被引:86
|
作者
Fang, Xiaoli
Li, Meiya [1 ]
Guo, Kaimo
Li, Jun
Pan, Muchen
Bai, Lihua
Luoshan, Mengdai
Zhao, Xingzhong
机构
[1] Wuhan Univ, Minist Educ, Sch Phys & Technol, Wuhan 430072, Peoples R China
基金
中国国家自然科学基金;
关键词
Graphene quantum dots; dye-sensitized solar cells; photoexcitation response; hot electron injection; short circuit current; UP-CONVERSION; TIO2; OXIDE; DEPOSITION; EFFICIENCY; ELECTRODE; ROUTE; BAND;
D O I
10.1016/j.electacta.2014.06.075
中图分类号
O646 [电化学、电解、磁化学];
学科分类号
081704 ;
摘要
Graphene quantum dots (GQDs) optimized TiO2 photoanodes and their dye-sensitized solar cells (DSSCs) were successfully demonstrated in this study for the first time. The characteristics of GQDs were confirmed by Raman and TEM measurements. Study indicated that the amount of dye-adsorption decreased firstly and then increased as the increase of the GQDs in the photoanodes, while that the J(SC), V-OC and eta of the corresponding DSSCs increased firstly and then decreased. Of all the DSSCs, the DSSC with an optimal amount of GQDs showed the best performance with a minimum dye-adsorption while the maximum J(SC) of 14.07 +/- 0.02 mA cm(-2) and eta of 6.10 +/- 0.01%, higher than those of the conventional DSSC (without GQDs) by 30.9% and 19.6%, respectively. The minimum dye-adsorption while the maximum J(SC) and eta obtained in the optimal DSSC are mainly attributed to the unique photoexcitation response of GQDs and the hot electrons injection from GQDs into TiO2. This study indicates that not only the properties of DSSCs can be improved by GQDs, but more importantly, the reduced use of dye by using GQDs is of significant importance for the low cost and environment-friendly DSSCs. (C) 2014 Elsevier Ltd. All rights reserved.
引用
收藏
页码:634 / 638
页数:5
相关论文
共 50 条
  • [31] Optimization of fabrication process in dye-sensitized solar cells
    Institute of Photoelectronic Thin Film Devices and Technique, Nankai University, Tianjin 300071, China
    不详
    Rengong Jingti Xuebao, 2009, 1 (53-59):
  • [32] Zinc Oxide Quantum Dots as Photoanode for Dye-Sensitized Solar Cell
    Idris, M. I.
    Abidin, Yasmin Zainol
    Abdullah, Huda
    Shafie, S.
    Chachuli, Siti Amaniah Mohd
    Rashid, M.
    Xian, K. J.
    2020 IEEE INTERNATIONAL CONFERENCE ON SEMICONDUCTOR ELECTRONICS (ICSE 2020), 2020, : 57 - 60
  • [33] Dye-sensitized solar cells
    Kong Fantai
    Dai Songyuan
    PROGRESS IN CHEMISTRY, 2006, 18 (11) : 1409 - 1424
  • [34] Dye-Sensitized Solar Cells
    Hagfeldt, Anders
    Boschloo, Gerrit
    Sun, Licheng
    Kloo, Lars
    Pettersson, Henrik
    CHEMICAL REVIEWS, 2010, 110 (11) : 6595 - 6663
  • [35] Dye-sensitized solar cells
    Grätzel, M
    JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY C-PHOTOCHEMISTRY REVIEWS, 2003, 4 (02) : 145 - 153
  • [36] Quantum Dots/silicon Nanowire Coaxial Photoelectrode-based Dye-sensitized Solar Cells
    Hsu, Che-Wei
    Hsieh, You-Dar
    Wang, Gou-Jen
    2015 SYMPOSIUM ON DESIGN, TEST, INTEGRATION AND PACKAGING OF MEMS/MOEMS (DTIP), 2015,
  • [37] Effect of zinc oxide quantum dots on the photovoltaic properties of natural dye-sensitized solar cells
    Peymannia, Masoud
    Gharanjig, Kamaladin
    Arabi, Amir Masoud
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2021, 45 (03) : 4170 - 4183
  • [38] Dye-Sensitized Solar Cells
    Tobin, Laura L.
    Sheridan, John T.
    WOMEN IN PHYSICS, 2013, 1517 : 194 - 194
  • [39] Photo-electrodes decorated with carbon quantum dots: Efficient dye-sensitized solar cells
    Cheruku, Rajesh
    Kim, Jae Hong
    Krishna, V. B. Murali
    Periyat, P.
    Duvvuri, SSSR. Sarathbabu
    RESULTS IN ENGINEERING, 2023, 20
  • [40] Graphene-Based Dye-Sensitized Solar Cells: A Review
    Singh, Eric
    Nalwa, Hari Singh
    SCIENCE OF ADVANCED MATERIALS, 2015, 7 (10) : 1863 - 1912