通往制造高效、稳定和商业上可行的大面积有机太阳能电池的道路

S. Rasool, Jiwoo Yeop, H. Cho, Woojin Lee, Jae Won Kim, Dohun Yuk, Jin Young Kim
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引用次数: 2

摘要

有机太阳能电池(OSCs)已经达到了卓越的认证功率转换效率(PCE),在单结和串联结构设计中分别超过19%和20%。这种高pce是由杰出的y形Y6非富勒烯受体(nfa)和PM6电子给体聚合物组成的。小面积osc的pce呈上升趋势。然而,大面积OSC子模块仍然无法达到如此高的PCE,迄今为止报道的最高认证PCE为- 12%,面积为58平方厘米。为了制造高效的大面积osc,随着子模块制造平台的改进,针对大面积系统定制的新型nfa即将问世。此外,寻找稳定而高效的osc仍在进行中。本文综述了小面积OSCs的研究进展,并对NFAs和给体聚合物的化学结构进行了综述。最后给出了系统的生命周期评价,讨论了高效稳定系统的能量回收期,并对系统的发展前景进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Path to the fabrication of efficient, stable and commercially viable large-area organic solar cells
Organic solar cells (OSCs) have reached an outstanding certified power conversion efficiency (PCE) of over 19% in single junction and 20% in tandem architecture design. Such high PCEs have emerged with outstanding Y-shaped Y6 non-fullerene acceptors (NFAs), together with PM6 electron donor polymers. PCEs are on the rise for small-area OSCs. However, large-area OSC sub-modules are still unable to achieve such high PCEs, and the highest certified PCE reported so far is ∼12% having an area of 58 cm2. To fabricate efficient large-area OSCs, new custom-designed NFAs for large-area systems are imminent along with improvements in the sub-module fabrication platforms. Moreover, the search for stable yet efficient OSCs is still in progress. In this review, progress in small-area OSCs is presented with reference to the advancement in the chemical structure of NFAs and donor polymers. Finally, the life-cycle assessment of OSCs is presented and the energy payback time of the efficient and stable OSCs is discussed and lastly, an outlook for the OSCs is given.
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