Conductivity increase of ZnO:Ga films by rapid thermal annealing

被引:30
|
作者
Khranovskyy, V.
Grossner, U.
Lazorenko, V.
Lashkarev, G.
Svensson, B. G.
Yakimova, R.
机构
[1] Inst Problems Mat Sci, UA-03680 Kiev, Ukraine
[2] Univ Oslo, Dept & Ctr Mat Sci & Nonatechnol, N-0316 Oslo, Norway
[3] Linkoping Univ, Dept Phys Chem & Biol, SE-58183 Linkoping, Sweden
关键词
ZnO; Ga doping; PEMOCVD; XRD; AFM;
D O I
10.1016/j.spmi.2007.04.073
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
Due to a constant increase in demands for transparent electronic devices the search for alternative transparent conducting oxides (TCO) is a major field of research now. New materials should be low-cost and have comparable or better optical and electrical characteristics in comparison to ITO. The use of n-type ZnO was proposed many years ago, but until now the best n-type dopant and its optimal concentration is still under discussion. Ga was proposed as the best dopant for ZnO due to similar atomic radius of Ga3+ compared to Zn2+ and its lower reactivity with oxygen. The resistivity p of ZnO:Ga/Si (100) films grown by PEMOCVD was found to be 3 x 10(-2) Omega cm. Rapid thermal annealing (RTA) was applied to increase the conductivity of ZnO:Ga (1 wt%) films and the optimal regime was determined to be 800 degrees C in oxygen media for 35 s. The resistivity ratio rho before/rho after before and after the annealing and the corresponding surface morphologies were investigated. The resistivity reduction (rho before/rho after approximate to 80) was observed after annealing at optimal regime and the final film resistivity was approximately approximate to 4 x 10(-4) Omega cm, due to effective Ga dopant activation. The route mean square roughness (R-q) of the films was found to decrease with increasing annealing time and the grain size has been found to increase slightly for all annealed samples. These results allow us to prove that highly conductive ZnO films can be obtained by simple postgrowth RTA in oxygen using only 1 % of Ga precursor in the precursor mix. (c) 2007 Elsevier Ltd. All rights reserved.
引用
收藏
页码:379 / 386
页数:8
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