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Al and F codoped ZnO by a novel co-spray deposition technique for solar cells applications

机译:通过新型共吸引沉积技术进行太阳能电池应用的新型共吸引ZnO

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ZnO was successfully synthesized by a novel co-spray deposition technique. Two solutions were prepared and sprayed through two spray heads. In one solution, Zn(O2CCH3)2 (Zn precursor) and AlCl3 (Al precursor) were dissolved in a mixture of deionized water and ethanol. In another solution, NH4F (F precursor) was dissolved in the same mixture. The deposition was carried out at 500°C on soda-lime glass in air. Compared to Al-doped or F-doped ZnO, Al and F codoped ZnO resulted in much lower sheet resistance. The lowest sheet resistance obtained so far is below 55 Ω/sq from solutions with 0.6 at.% Al and 55 at.% F, respectively, after vacuum annealing at 400°C for 1 h. The average transmittance of Al and F codoped ZnO is above 80% in the visible range. The effects of dopant concentrations in the starting solutions on the electrical, structural, and optical properties of Al and F codoped ZnO were also investigated.
机译:通过新型共喷沉积技术成功地合成ZnO。制备两种溶液并通过两个喷头喷射。在一种溶液中,将Zn(O 2 CCH 3)2(Zn前体)和AlCl 3(Al前体)溶于去离子水和乙醇的混合物中。在另一个溶液中,将NH 4 F(F前体)溶解在相同的混合物中。在空气中在500℃下在500℃下进行沉积。与Al掺杂或F掺杂的ZnO,Al和F编码ZnO相比,导致薄层电阻大大。到目前为止所获得的最低薄层电阻低于55Ω/ sq,溶液在0.6℃下。%Al和55.%F分别在400℃下真空退火1小时后。 Al和F编码ZnO的平均透射率在可见范围内高于80%。还研究了掺杂剂浓度在Al和F编码ZnO的电气,结构和光学性质的起始溶液中的影响。

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