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Roll-to-roll fabrication of large scale and regular arrays of three-dimensional nanospikes for high efficiency and flexible photovoltaics

机译:卷式制造大型且规则的三维纳米钉阵列以实现高效且灵活的光伏

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摘要

Three-dimensional (3-D) nanostructures have demonstrated enticing potency to boost performance of photovoltaic devices primarily owning to the improved photon capturing capability. Nevertheless, cost-effective and scalable fabrication of regular 3-D nanostructures with decent robustness and flexibility still remains as a challenging task. Meanwhile, establishing rational design guidelines for 3-D nanostructured solar cells with the balanced electrical and optical performance are of paramount importance and in urgent need. Herein, regular arrays of 3-D nanospikes (NSPs) were fabricated on flexible aluminum foil with a roll-to-roll compatible process. The NSPs have precisely controlled geometry and periodicity which allow systematic investigation on geometry dependent optical and electrical performance of the devices with experiments and modeling. Intriguingly, it has been discovered that the efficiency of an amorphous-Si (a-Si) photovoltaic device fabricated on NSPs can be improved by 43%, as compared to its planar counterpart, in an optimal case. Furthermore, large scale flexible NSP solar cell devices have been fabricated and demonstrated. These results not only have shed light on the design rules of high performance nanostructured solar cells, but also demonstrated a highly practical process to fabricate efficient solar panels with 3-D nanostructures, thus may have immediate impact on thin film photovoltaic industry.
机译:三维(3-D)纳米结构已显示出诱人的潜能,以提高光伏器件的性能,这主要归功于改进的光子捕获能力。然而,具有合理的鲁棒性和灵活性的具有成本效益的可扩展的常规3D纳米结构制造仍然是一项艰巨的任务。同时,为具有平衡的电学和光学性能的3-D纳米结构太阳能电池建立合理的设计准则至关重要,而且迫切需要。在本文中,通过卷对卷兼容工艺在柔性铝箔上制造了3-D纳米钉(NSP)的规则阵列。 NSP具有精确控制的几何形状和周期性,可以通过实验和建模系统地研究与器件有关的几何形状的光学和电气性能。有趣的是,已经发现,在最佳情况下,与平面晶种相比,在NSP上制造的非晶硅(a-Si)光伏器件的效率可提高43%。此外,已经制造并展示了大规模的柔性NSP太阳能电池装置。这些结果不仅阐明了高性能纳米结构太阳能电池的设计规则,而且还展示了一种高度实用的工艺来制造具有3-D纳米结构的高效太阳能电池板,因此可能对薄膜光伏产业产生直接影响。

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