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首页> 外文期刊>Bulletin of Materials Science >Heavy lithium-doped ZnO thin films prepared by spray pyrolysis method
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Heavy lithium-doped ZnO thin films prepared by spray pyrolysis method

机译:喷雾热解法制备重掺杂锂的ZnO薄膜

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Lithium-doped ZnO thin films (ZnO : Li (x) ) were prepared by spray pyrolysis method on the glass substrates for x (x = [Li]/[Zn]) value varied between 5 and 70%. Structural, electrical and optical properties of the samples were studied by X-ray diffraction (XRD), UV-Vis-NIR spectroscopy, scanning electron microscopy (SEM), Hall effect and sheet resistance measurements. XRD results show that for x a parts per thousand currency sign 50%, the structure of the films tends to be polycrystals of wurtzite structure with preferred direction along (0 0 2). The best crystalline order is found at x = 20% and the crystal structure is stable until x = 60%. The Hall effect results describe that Li doping leads to change in the conduction type from n- to p-type, again it changes to n-type at x = 70% and is attributed to self-compensation effect. Moreover, the carrier density was calculated in the order of 10(13) cm(-3). The resistivity of Li-doped films decreases until 22 Omega cm at x = 50%. Optical bandgap was reduced slightly, from 3.27 to 3.24 eV as a function of the grain size. Optical transmittance in the visible range reaches T = 97%, by increasing of Li content until x = 20%. Electrical and optical properties are coherent with structural results.
机译:通过喷雾热解法在玻璃基板上制备了掺锂的ZnO薄膜(ZnO:Li(x)),其x(x = [Li] / [Zn])值在5%至70%之间变化。通过X射线衍射(XRD),UV-Vis-NIR光谱,扫描电子显微镜(SEM),霍尔效应和薄层电阻测量研究了样品的结构,电学和光学性质。 XRD结果表明,对于x a /千分之一货币符号为50%,膜的结构倾向于是纤锌矿结构的多晶,其具有沿(0 0 2)的优选方向。发现最佳结晶顺序为x = 20%,并且晶体结构稳定,直到x = 60%。霍尔效应结果表明,Li掺杂导致导电类型从n型变为p型,在x = 70%时再次变为n型,归因于自补偿效应。此外,载流子密度按10(13)cm(-3)的顺序计算。掺杂锂的薄膜的电阻率在x = 50%时降低至22Ωcm。光学带隙根据晶粒尺寸从3.27 eV略微降低。通过增加Li含量直到x = 20%,可见光范围内的透光率达到T = 97%。电学和光学性质与结构结果一致。

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