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Studies on aluminum-doped ZnO films for transparent electrode and antireflection coating of beta-FeSi2 optoelectronic devices

机译:β-FeSi2光电器件透明电极和抗反射涂层的铝掺杂ZnO薄膜的研究

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beta-FeSi2 can be used for various optoelectronic devices owing to its superior material features including high optical absorption coefficient and direct band gap of about 0.8 eV Due to its high refractive index (> 5.6), however, suitable antireflection coating (ARC) is necessary for practical device applications. In order to increase the effective areas of optoelectronic devices, transparent electrodes should be also developed. In this work, Al-doped ZnO (AZO) films were fabricated by sputtering on beta-FeSi2 thin films and were found suitable for both transparent electrodes and ARC films. Choosing optimum substrate temperature and sputtering rate, high quality AZO films were formed. The conductivity of AZO films was as high as 3 x 10(3) S/cm. and ohmic contact was easily achieved between AZO and beta-FeSi2 films, indicating AZO film as an ideal transparent electrode for beta-FeSi2. The transmittance of 400-nm-thick AZO films. was > 80% and > 70% in the wavelength ranges 400-1400 and 1400-1600 nm, respectively. By changing the thickness of AZO film, the central wavelength of minimum reflectance was adjusted to 1550 nm where the total reflectance of AZO/beta-FeSi2/Si structure was reduced below 2%. (c) 2004 Published by Elsevier B.V.
机译:由于其优异的材料特性,包括高光吸收系数和约0.8 eV的直接带隙,β-FeSi2可用于各种光电设备。由于其高折射率(> 5.6),因此需要合适的抗反射涂层(ARC)适用于实际的设备应用。为了增加光电器件的有效面积,还应该开发透明电极。在这项工作中,通过在β-FeSi2薄膜上溅射制备了掺Al的ZnO(AZO)膜,发现该膜适用于透明电极和ARC膜。选择最佳的基板温度和溅射速率,可以形成高质量的AZO膜。 AZO膜的电导率高达3 x 10(3)S / cm。 AZO和β-FeSi2薄膜之间很容易实现欧姆接触,这表明AZO膜是β-FeSi2的理想透明电极。 400nm厚的AZO薄膜的透射率。在400-1400nm和1400-1600nm的波长范围内分别为> 80%和> 70%。通过改变AZO膜的厚度,将最小反射率的中心波长调节至1550nm,其中AZO /β-FeSi2/ Si结构的总反射率降低至2%以下。 (c)2004年由Elsevier B.V.

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