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Total Internal Reflection for Effectively Transparent Solar Cell Contacts

机译:全内反射可有效透明地接触太阳能电池

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摘要

A new strategy for eliminating photocurrent losses due to the metal contacts on the front of a solar cell was proposed, simulated, and tested. By placing triangular cross-section lines of low refractive index on top of the contacts, total-internal reflection at the interface of the low-index triangles and the surrounding material can direct light away from the metal and into the photoactive absorber. Simulations indicated that losses can be eliminated for any incident angle, and that yearly energy production improvements commensurate with the metallized area are possible. Proof of principle experiments were carried out to eliminate the reflective losses of a commercial solar cell's busbar contact. Spatially resolved laser beam induced current measurements demonstrated that reflection losses due to the busbar were reduced by voids with triangular cross-section.
机译:提出,模拟和测试了一种新的策略,该策略可以消除由于太阳能电池正面的金属触点引起的光电流损耗。通过在触点顶部放置低折射率的三角形横截面线,低折射率三角形和周围材料的界面处的全内反射可以将光从金属射入并进入光敏吸收体。模拟表明,可以消除任何入射角的损失,并且有可能每年实现与金属化面积相当的能源生产改进。进行了原理验证实验,以消除商用太阳能电池的母线触点的反射损耗。空间分辨的激光束感应电流测量结果表明,由于母线的反射损耗被三角形横截面的空隙所减少。

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