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A series connection architecture for large-area organic photovoltaic modules with a 7.5 module efficiency

机译:适用于大面积有机光伏模块的串联连接架构模块效率为7.5%

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摘要

The fabrication of organic photovoltaic modules via printing techniques has been the greatest challenge for their commercial manufacture. Current module architecture, which is based on a monolithic geometry consisting of serially interconnecting stripe-patterned subcells with finite widths, requires highly sophisticated patterning processes that significantly increase the complexity of printing production lines and cause serious reductions in module efficiency due to so-called aperture loss in series connection regions. Herein we demonstrate an innovative module structure that can simultaneously reduce both patterning processes and aperture loss. By using a charge recombination feature that occurs at contacts between electron- and hole-transport layers, we devise a series connection method that facilitates module fabrication without patterning the charge transport layers. With the successive deposition of component layers using slot-die and doctor-blade printing techniques, we achieve a high module efficiency reaching 7.5% with area of 4.15 cm2.
机译:通过印刷技术制造有机光伏模块一直是其商业制造的最大挑战。当前的模块架构基于由有限宽度的条带化子单元串行互连组成的整体式几何结构,需要高度复杂的图案化工艺,这大大增加了印刷生产线的复杂性,并由于所谓的孔径而导致模块效率的严重降低。串联连接区域的损耗。在这里,我们展示了一种创新的模块结构,该结构可以同时减少图案化过程和孔径损失。通过使用在电子传输层和空穴传输层之间的接触处发生的电荷复合特征,我们设计了一种串联连接方法,该方法有助于在不构图电荷传输层的情况下进行模块制造。通过使用缝模和刮刀印刷技术连续沉积组件层,我们实现了面积为4.15 cm 2 的高模块效率,达到7.5%。

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