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Sputter deposited transition metal nitrides as back electrode for CIGS solar cells

机译:溅射沉积的过渡金属氮化物作为CIGS太阳能电池的背面电极

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摘要

Transition metal nitrides such as TiN and ZrN have a potential use as back electrodes in Cu(In,Ga)S or Cu(In,Ga)Se solar cells. Important properties of the back electrode are its conductivity, reflection at higher wavelengths, mechanical and chemical stability, and its barrier properties for impurity diffusion when metal foils are used as flexible substrate for the solar cells. Here, TiN thin films were deposited with reactive magnetron sputtering and were characterized with Rutherford backscattering spectroscopy, X-ray reflection, ellipsometry and UV-Vis-NIR optical spectroscopy. The resulting thin film density and optical reflection were characterized and compared to the particle fluxes towards the substrate. Therefore, the total momentum flux, total energy flux and momentum flux of target species towards the growing film were measured or simulated. A distinct relation between the density and optical reflection of the TiN films and the momentum flux of target species towards the substrate is shown. © 2011 Elsevier Ltd.
机译:TiN和ZrN等过渡金属氮化物有潜力用作Cu(In,Ga)S或Cu(In,Ga)Se太阳能电池的背电极。当金属箔用作太阳能电池的柔性基板时,背电极的重要特性是其导电性,在更高波长下的反射,机械和化学稳定性以及对杂质扩散的阻挡特性。在这里,TiN薄膜通过反应磁控溅射沉积,并通过卢瑟福背散射光谱,X射线反射,椭圆偏振和UV-Vis-NIR光谱进行表征。表征所得的薄膜密度和光学反射,并将其与朝向基板的颗粒通量进行比较。因此,测量或模拟了目标物质向生长膜的总动量通量,总能量通量和动量通量。显示了TiN薄膜的密度和光学反射与目标物质向基板的动量通量之间的明显关系。 ©2011爱思唯尔有限公司。

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