首页> 外文会议>Proceedings of ISES Solar World Congress 2007: Solar Energy and Human Settlement >HYDROGENATED MICROCRYSTALLINE SILICON SINGLE-JUNCTION NIP SOLAR CELLS
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HYDROGENATED MICROCRYSTALLINE SILICON SINGLE-JUNCTION NIP SOLAR CELLS

机译:氢化微晶硅单结NIP太阳能电池

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The microstructural properties of hydrogenated microcrystalline silicon solar cells are investigated using Raman spectroscopy and x-ray diffraction. It was found that the increase of grain size and crystalline volume fraction with thickness is the main reason for the deterioration of cell performance as using constant hydrogen dilution technique. In order to adjust grain size and crystalline volume fraction along the growth direction, gradient hydrogen dilution technique has been adopted to control the structural evolution. The experiment results demonstrated that the performance of solar cell can be much improved when there’s a higher crystallinity at n/i interface and a lower crystallinity at i/p interface. We have achieved an initial active-area efficiency of 5.7% (Voc=0.47V, Jsc=20.2mA/cm2, FF=60%) for the μc-Si:H single-junction n-i-p solar cells.
机译:利用拉曼光谱和X射线衍射研究了氢化微晶硅太阳能电池的微观结构性能。结果发现,随着使用恒定氢稀释技术,晶粒尺寸和结晶体积级分的增加是电池性能劣化的主要原因。为了调节沿生长方向的晶粒尺寸和结晶体积分数,采用梯度氢稀释技术来控制结构演化。实验结果表明,当N / I界面的较高结晶度和I / P接口下的较低结晶度时,太阳能电池的性能可以大大改善。对于μC-Si:H单结N-I-P太阳能电池,我们已经实现了5.7%(VOC = 0.47V,JSC = 20.2mA / CM2,FF = 60%)的初始有效区域效率。

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