首页|透明衬底铜铟镓硒太阳电池的背接触优化研究

透明衬底铜铟镓硒太阳电池的背接触优化研究

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近年来,透明衬底太阳电池凭借着双面透光、发电量潜力大的优势,应用于建筑集成光伏等众多新兴场景,引起广泛关注.其中,铜铟镓硒(CIGS)薄膜太阳电池具有高吸收系数、可柔性化等优点,被认为是透明衬底太阳电池的理想选择之一.然而,透明衬底与CIGS吸收层背界面能带不匹配及其在高温工艺中易生成GaOx副产物,导致衬底与吸收层之间难以实现良好的欧姆接触.针对该问题,引入了不同厚度的薄Mo层作为FTO透明衬底与CIGS之间的中间层,研究了其对太阳电池性能的影响.研究结果表明,薄Mo层的引入促进了CIGS薄膜元素的均匀扩散,提高了薄膜的结晶质量.随着Mo层厚度增加,背界面的缺陷态密度和势垒高度逐渐降低,背界面处载流子复合减少,但透射率损失增大.40 nm厚度的Mo层在确保衬底透射率不降低的同时,能够显著提升太阳电池的性能.研究结果为进一步优化CIGS太阳电池的设计提供了有益的参考.
Optimization of Back-interface Contact for Cu(In,Ga)Se2 Solar Cells on Transparent Substrates
In recent years,solar cells on transparent substrates have attracted attention in a wide range of emerging appli-cations,such as Building-Integrated PhotoVoltaics(BIPV),owing to their bifacial transmittance and high potential for pow-er generation.In particular,Cu(In,Ga)Se2(CIGS)thin film solar cells,with advantages of high absorption coefficients and flexibility,are considered as one of ideal candidates for these applications.However,it is hard to obtain an acceptable ohmic contact between the transparent substrate and CIGS due to the mismatch of band structures at the back contact and the genera-tion of GaOx during high-temperature processes.To solve this problem,the molybdenum layers with different thickness as an interlayer between the FTO transparent substrate and the CIGS are introduced,and their effects on the solar cell performance are explored.The results show that the introduction of Mo layer results in a more sufficient elemental diffusion and improves crystalline quality of the CIGS film.With the increase of Mo thickness,the defect density and barrier height are diminished,and recombination at the back interface is reduced,but the transmittance is degraded.The Mo layer of 40 nm thickness can significantly improve the cell performance while the transmittance of the substrate is not deteriorated.The result provides a useful reference for further optimization of the design of CIGS solar cells with transparent substrate.

CIGS solar celltransparent substratemolybdenuminterface recombination

孟赫、姚毅峰、马静怡、杨逍、刘芳芳、刘玮

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南开大学 光电子薄膜器件与技术研究所 薄膜光电子技术教育部工程研究中心 光伏材料与电池国家重点实验室 天津市太阳能高效利用重点实验室,天津 300350

铜铟镓硒太阳电池 透明衬底 界面复合

国家自然科学基金国家自然科学基金

6177408961974076

2024

真空与低温
中国航天科技集团公司第五研究院510研究所

真空与低温

CSTPCD
影响因子:0.567
ISSN:1006-7086
年,卷(期):2024.30(5)