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Optical and electrical properties of URT-IP ZnO thin films for photovoltaic devices

机译:用于光伏器件的URT-IP ZnO薄膜的光电性能

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Optical and electrical properties have been studied on thin polycrystalline ZnO films deposited on a glass substrate by Uramoto-Tanaka type ion plating (DC-arc ion-plating) method with relation to the oxygen flow rate (OFR) in the deposition chamber and to the Ga-doping concentration. For undoped films, an increase of OFR led to increase in the resistivity and decrease in the carrier concentration. At OFR of 10 sccm, both the Hall mobility and the near-band-edge photoluminescence (PL) intensity were the maximum, and the good-quality film was obtained at this OFR. Further increase of OFR led to the decrease in the Hall mobility and the increase in the intensities of defect-related PL bands. The Ga-doping reduces the resistivity by one order of magnitude. The Hall mobility and PL intensity were the maximum at OFR of 10 sccm, and the crystal quality is good at this OFR. ZnO:Ga films exhibited very broad near-band-edge PL, and the effect of the Ga-doping on PL is discussed. The optical transmittance was more than 90% invisible. The decrease in the optical transmittance and increase in the reflectance were observed for wavelength longer than 1200 nm for films with high carrier concentration of approximately 10~(21) cm~(-3).
机译:已经通过Uramoto-Tanaka型离子镀(DC-arc离子镀)方法对玻璃基板上沉积的多晶ZnO薄膜的光学和电学性质进行了研究,研究了其与沉积室中氧气流量(OFR)以及与镓掺杂浓度。对于未掺杂的薄膜,OFR的增加导致电阻率增加和载流子浓度降低。在10 sccm的OFR下,霍尔迁移率和近带边缘光致发光(PL)强度都最大,并且在该OFR上获得了高质量的薄膜。 OFR的进一步增加导致霍尔迁移率的下降和缺陷相关PL谱带强度的增加。 Ga掺杂将电阻率降低一个数量级。霍尔迁移率和PL强度在OFR为10 sccm时达到最大值,并且该OFR的晶体质量良好。 ZnO:Ga薄膜表现出非常宽的近带边缘PL,并讨论了Ga掺杂对PL的影响。透光率大于90%是不可见的。对于高载流子浓度约为10〜(21)cm〜(-3)的薄膜,当波长大于1200 nm时,观察到光透射率的下降和反射率的增加。

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