Synthesis of Cu2ZnSnS4 Thin Films by a Precursor Solution Paste for Thin Film Solar Cell Applications

被引:85
作者
Cho, Jin Woo [1 ,2 ]
Ismail, Agus [1 ,4 ]
Park, Se Jin [1 ]
Kim, Woong [2 ]
Yoon, Sungho [5 ]
Min, Byoung Koun [1 ,3 ,4 ]
机构
[1] Korea Inst Sci & Technol, Clean Energy Res Ctr, Seoul 136791, South Korea
[2] Korea Univ, Dept Mat Sci & Engn, Seoul 136713, South Korea
[3] Korea Univ, Green Sch, Seoul 136713, South Korea
[4] Univ Sci & Technol, Taejon 305333, South Korea
[5] Kookmin Univ, Coll Nat Sci, Dept Bio & Nano Chem, Seoul 136702, South Korea
基金
新加坡国家研究基金会;
关键词
Cu2ZnSnS4; CZTS; solution process; paste coating; solar cells;
D O I
10.1021/am401210w
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
Cu2ZnSnS4 (CZTS) is a very promising semiconductor material when used for the absorber layer of thin film solar cells because it consists of only abundant and inexpensive elements. In addition, a low-cost solution process is applicable to the preparation of CZTS absorber films, which reduces the cost when this film is used for the production of thin film solar cells. To fabricate solution-processed CZTS thin film using an easily scalable and relatively safe method, we suggest a precursor solution paste coating method with a two-step heating process (oxidation and sulfurization). The synthesized CZTS film was observed to be composed of grains of a size of similar to 300 nm, showing an overall densely packed morphology with some pores and voids. A solar cell device with this film as an absorber layer showed the highest efficiency of 3.02% with an open circuit voltage of 556 mV, a short current density of 13.5 mA/cm(2), and a fill factor of 40.3%. We also noted the existence of Cd moieties and an inhomogeneous Zn distribution in the CZTS film, which may have been triggered by the presence of pores and voids in the CZTS film.
引用
收藏
页码:4162 / 4165
页数:4
相关论文
共 16 条
[1]   Low band gap liquid-processed CZTSe solar cell with 10.1% efficiency [J].
Bag, Santanu ;
Gunawan, Oki ;
Gokmen, Tayfun ;
Zhu, Yu ;
Todorov, Teodor K. ;
Mitzi, David B. .
ENERGY & ENVIRONMENTAL SCIENCE, 2012, 5 (05) :7060-7065
[2]   In-depth resolved Raman scattering analysis for the identification of secondary phases: Characterization of Cu2ZnSnS4 layers for solar cell applications [J].
Fontane, X. ;
Calvo-Barrio, L. ;
Izquierdo-Roca, V. ;
Saucedo, E. ;
Perez-Rodriguez, A. ;
Morante, J. R. ;
Berg, D. M. ;
Dale, P. J. ;
Siebentritt, S. .
APPLIED PHYSICS LETTERS, 2011, 98 (18)
[3]   Effects of solution-grown CdS on Cu(InGa)Se2 grain boundaries [J].
Lei, C. ;
Duch, M. ;
Robertson, I. M. ;
Rockett, A. .
JOURNAL OF APPLIED PHYSICS, 2010, 108 (11)
[4]   Cd doping at the CuInSe2/CdS heterojunction [J].
Liao, DX ;
Rockett, A .
JOURNAL OF APPLIED PHYSICS, 2003, 93 (11) :9380-9382
[5]   Nano-structural investigations on Cd-doping into Cu(In,Ga)Se2 thin films by chemical bath deposition process [J].
Nakada, T .
THIN SOLID FILMS, 2000, 361 :346-352
[6]   CIGS absorbers and processes [J].
Niki, Shigeru ;
Contreras, Miguel ;
Repins, Ingrid ;
Powalla, Michael ;
Kushiya, Katsumi ;
Ishizuka, Shogo ;
Matsubara, Koji .
PROGRESS IN PHOTOVOLTAICS, 2010, 18 (06) :453-466
[7]   Routes to copper zinc tin sulfide Cu2ZnSnS4 a potential material for solar cells [J].
Ramasamy, Karthik ;
Malik, Mohammad A. ;
O'Brien, Paul .
CHEMICAL COMMUNICATIONS, 2012, 48 (46) :5703-5714
[8]   Co-evaporated Cu2ZnSnSe4 films and devices [J].
Repins, Ingrid ;
Beall, Carolyn ;
Vora, Nirav ;
DeHart, Clay ;
Kuciauskas, Darius ;
Dippo, Pat ;
To, Bobby ;
Mann, Jonathan ;
Hsu, Wan-Ching ;
Goodrich, Alan ;
Noufi, Rommel .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2012, 101 :154-159
[9]   A critical review of thermodynamic data for inorganic tin species [J].
Séby, F ;
Potin-Gautier, M ;
Giffaut, E ;
Donard, OFX .
GEOCHIMICA ET COSMOCHIMICA ACTA, 2001, 65 (18) :3041-3053
[10]   Kesterites - a challenging material for solar cells [J].
Siebentritt, Susanne ;
Schorr, Susan .
PROGRESS IN PHOTOVOLTAICS, 2012, 20 (05) :512-519