Effect of reduced graphene oxide addition on the performance of zinc oxide nanorod based dye-sensitized solar cell

被引:1
作者
Wahab, M. S. [1 ]
Madsuha, A. F. [1 ]
Rosa, E. S. [2 ]
Yuwono, A. H. [1 ]
机构
[1] Univ Indonesia, Dept Met & Mat Engn, Depok 16424, Indonesia
[2] Indonesian Inst Sci P2ET LIPI, Res Ctr Elect & Telecommun, Jl Sangkuriang,Komplek LIPI, Bandung 40135, Indonesia
来源
4TH ANNUAL APPLIED SCIENCE AND ENGINEERING CONFERENCE, 2019 | 2019年 / 1402卷
关键词
TIO2-GRAPHENE NANOCOMPOSITES; ZNO;
D O I
10.1088/1742-6596/1402/6/066017
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
As one of third generation photovoltaic device, dye-sensitized solar cell (DSSC) plays important part in search for new and renewable energy resources. As part of this device, dye has a very critical function due to its responsibility in absorbing the photon energy from the sunlight. The more light can be absorbed, the higher the value of photon to electricity conversion efficiency can be obtained. For increasing the absorption capacity of the dye, this work investigated the effect of reduced graphene oxide (rGO) addition into the dye solution with rGO to dye weight % ratio of 1:100; 3:100; and 5:100 respectively. On the basis of investigation, it was found that the ratio of 3:100 produced a higher power conversion efficiency (PCE) of about 0,02% as compared to the reference cells which displayed a value of 0,005%. It confirms that introducing rGO into the dye can enhance the DSSC performance, though several fabrication handling procedures still need to be improved as well.
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页数:7
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共 19 条
[1]  
Alam S, 2017, 2017 INTERNATIONAL CONFERENCE ON BROADBAND COMMUNICATION, WIRELESS SENSORS AND POWERING (BCWSP), P1
[2]   Physical chemical principles of photovoltaic conversion with nanoparticulate, mesoporous dye-sensitized solar cells [J].
Bisquert, J ;
Cahen, D ;
Hodes, G ;
Rühle, S ;
Zaban, A .
JOURNAL OF PHYSICAL CHEMISTRY B, 2004, 108 (24) :8106-8118
[3]   Graphene, related two-dimensional crystals, and hybrid systems for energy conversion and storage [J].
Bonaccorso, Francesco ;
Colombo, Luigi ;
Yu, Guihua ;
Stoller, Meryl ;
Tozzini, Valentina ;
Ferrari, Andrea C. ;
Ruoff, Rodney S. ;
Pellegrini, Vittorio .
SCIENCE, 2015, 347 (6217)
[4]   Analysis of Electron Transfer Properties of ZnO and TiO2 Photoanodes for Dye-Sensitized Solar Cells [J].
Chandiran, Aravind Kumar ;
Abdi-Jalebi, Mojtaba ;
Nazeeruddin, Mohammad K. ;
Graetzel, Michael .
ACS NANO, 2014, 8 (03) :2261-2268
[5]   TiO2-graphene nanocomposites for photocatalytic hydrogen production from splitting water [J].
Cheng, Ping ;
Yang, Zhi ;
Wang, Hong ;
Cheng, Wei ;
Chen, Mingxia ;
Shangguan, Wenfeng ;
Ding, Guifu .
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2012, 37 (03) :2224-2230
[6]   Dye-sensitized solar cells using graphene-based carbon nano composite as counter electrode [J].
Choi, Hyonkwang ;
Kim, Hyunkook ;
Hwang, Sookhyun ;
Choi, Wonbong ;
Jeon, Minhyon .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2011, 95 (01) :323-325
[7]   Raman spectrum of graphene and graphene layers [J].
Ferrari, A. C. ;
Meyer, J. C. ;
Scardaci, V. ;
Casiraghi, C. ;
Lazzeri, M. ;
Mauri, F. ;
Piscanec, S. ;
Jiang, D. ;
Novoselov, K. S. ;
Roth, S. ;
Geim, A. K. .
PHYSICAL REVIEW LETTERS, 2006, 97 (18)
[8]   Investigation of the shift of Raman modes of graphene flakes [J].
Haluska, M. ;
Obergfell, D. ;
Meyer, J. C. ;
Scalia, G. ;
Ulbricht, G. ;
Krauss, B. ;
Chae, D. H. ;
Lohmann, T. ;
Lebert, M. ;
Kaempgen, M. ;
Hulman, M. ;
Smet, J. ;
Roth, S. ;
von Klitzing, K. .
PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS, 2007, 244 (11) :4143-4146
[9]  
Huang C -Y, 2017, ENHANCED PERFORMANCE, V56
[10]   Facile and safe graphene preparation on solution based platform [J].
Johra, Fatima Tuz ;
Lee, Jee-Wook ;
Jung, Woo-Gwang .
JOURNAL OF INDUSTRIAL AND ENGINEERING CHEMISTRY, 2014, 20 (05) :2883-2887