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Self-aligned carrier-selective PEDOT:PSS contacts on optically highly transparent boron-emitters

机译:自对准载体选择性佩托:PSS在光学高度透明的硼 - 发射器上接触

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摘要

As the efficiency of silicon solar cells increases continuously, recombination at the metal contacts becomes more and more limiting, unless the contacts are passivated. Passivating contact layers on the front side, however, usually lead to parasitic absorption. To prevent this we develop a new self-aligned deposition process to implement a passivating layer only under the metal contacts. As passivating layer for the contacts on an optically highly transparent boron emitter we use PEDOT:PSS, which can be electro-polymerized at an anodic surface in an aqueous electrolyte. This electro-deposition technique is used to deposit PEDOT:PSS in the openings of the patterned dielectric passivation layers on the boron emitter of an n-type silicon solar cell. We demonstrate that the electrical properties of the electro-deposited PEDOT:PSS layer are suitable for a passivating contact layer and that the Fermi-level is de-pinned at the interface with silicon.
机译:除非触点钝化,否则硅太阳能电池的效率连续增加,金属触点处的重组变得越来越有限。 然而,前侧钝化接触层通常导致寄生吸收。 为了防止这种方式,我们开发了一种新的自对准沉积过程,仅在金属触点下实现钝化层。 作为光学高度透明的硼发射器上的触点的钝化层,我们使用PEDOT:PSS,其可以在阳极表面在含水电解质中电聚合。 这种电沉积技术用于沉积PEDOT:PSS在N型硅太阳能电池的硼发射器上的图案化介电钝化器的开口中。 我们证明了电沉积的转型的电特性:PSS层适用于钝化接触层,并且费米水平在与硅的界面处被取样。

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