首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Investigation of dielectric layers laser ablation mechanism on n-PERT silicon solar cells for (Ni) plating process: Laser impact on surface morphology, composition, electrical properties and metallization quality
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Investigation of dielectric layers laser ablation mechanism on n-PERT silicon solar cells for (Ni) plating process: Laser impact on surface morphology, composition, electrical properties and metallization quality

机译:N-Pert硅太阳能电池(Ni)电池介电层激光烧蚀机理的研究:激光影响表面形态,组成,电学性能和金属化质量

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摘要

Laser contact opening is a critical step for solar cells manufacturing and needs to be optimized to achieve high efficiencies. In this paper, laser contact opening using a picosecond laser (wavelength 355 nm, pulse duration 10 ps) has been carried out on n-PERT precursors composed of a SiOx/SiOxNy stack on the rear polished side and a SiOxNy layer on the front textured side. By varying peak fluence from 0.130 J/cm(2) to 2.159 J/cm(2) and spot overlapping, ninety parameters combinations have been tested to open these dielectric layers. Surface morphology characterization, before and after laser ablation, has been realized using Confocal Laser Scanning Microscopy and Scanning Electron Microscopy. Bulk and surface compositions have also been investigated by Energy Dispersive Spectroscopy and X-ray Photoelectron Spectroscopy analysis, respectively. Results have shown the existence of four separated laser impacted areas on the polished side and a related ablation mechanism is suggested. Also, electrical characterization using four probe measurements and calibrated lifetime photoluminescence revealed that electrical properties of the silicon underlying increased when post laser annealing was performed associated with no spot overlapping. Then, nickel electroless deposition has been performed and first characterizations indicate adherence issues and inhomogeneous metallization. Characterization of metallized samples revealed that these observations were closely linked to the non-homogenous surface morphology and composition after laser ablation.
机译:激光接触开口是太阳能电池制造的关键步骤,并且需要优化以实现高效率。在本文中,在由后抛光侧的SiOx / SiOxny堆叠组成的N-Pert前体和前部纹理上的SiOxny层组成的N-Pert Precessors上进行了激光接触开口。边。通过0.130 J / cm(2)至2.159J / cm(2)和点重叠,已经测试了九十参数组合以打开这些介电层。通过共聚焦激光扫描显微镜和扫描电子显微镜实现了激光消融之前和之后的表面形态表征。还通过能量分散光谱和X射线光电子能谱分析研究了体积和表面组合物。结果表明,建议抛光侧的四个分离激光撞击区域和相关的消融机制。而且,使用四个探针测量和校准寿命光致发光的电学表征显示,当与无点重叠相关联的激光退火时,硅的电气性质增加。然后,已经进行了镍化学沉积,并且首先表征表明依从性问题和不均匀的金属化。金属化样品的表征揭示了这些观察结果与激光烧蚀后的非均匀表面形态和组合物密切相关。

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