混合畴增强了小分子体异质结太阳能电池的电荷生成和提取(会议报告)

B. Collins, O. Alqahtani, M. Babics, Julien Gorenflot, Victoria Savikhin, Thomas J Ferron, A. H. Balawi, A. Paulke, Z. Kan, Michael C. Pope, Andrew J. Clulow, Jannic Wolf, P. Burn, I. Gentle, D. Neher, M. Toney, F. Laquai, P. Beaujuge
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引用次数: 0

摘要

研究表明,纳米形貌对体积异质结(BHJ)有机太阳能电池的性能起着重要作用。从对聚合物-富勒烯体系的深入研究中,一些趋势变得明显。例如,在高性能体系中通常测量小~10 nm域,高结晶度和低混相性。然而,这些概念对于小分子bhj的普遍性尚不清楚。我们对sm -富勒烯BHJ器件的性能、电荷产生和提取动力学以及纳米形态进行了全面的研究,以探索这类材料中这些关键的结构-性能关系。在所调查的系统中,小域对性能仍然很重要。然而,由具有适度结晶度的高度混合结构域组成的器件优于由纯/高结晶结构域组成的器件。这样的结果指出了SM-based器件的另一种理想形态,它涉及主要的混合相。这源于SM聚集在高度混合的区域,这既最大化了电荷产生的界面,又建立了有效电荷提取的连续途径。这种形态范式应该在未来的SM系统中考虑,以追求高效率的大规模太阳能发电。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mixed domains enhance charge generation and extraction in small-molecule bulk heterojunction solar cells (Conference Presentation)
It is established that the nanomorphology plays an important role in performance of bulk-heterojunction (BHJ) organic solar cells. From intense research in polymer-fullerene systems, some trends are becoming apparent. For example, small ~10 nm domains, high crystallinity, and low miscibility are typically measured in high-performance systems. However, the generality of these concepts for small-molecule (SM) BHJs is unclear. We present a comprehensive study of performance, charge generation and extraction dynamics, and nanomorphology in SM-fullerene BHJ devices to probe these critical structure-property relationships in this class of materials. In the systems investigated, small domains remain important for performance. However, devices composed of highly mixed domains with modest crystallinity outperform those consisting of pure/highly crystalline domains. Such a result points to an alternative ideal morphology for SM-based devices that involves a predominant mixed phase. This stems from SM aggregation in highly mixed domains that both maximize interface for charge generation and establish continuous pathways for efficient charge extraction. Such a morphological paradigm should be considered in future SM systems in pursuit of high-efficiency large-scale solar power production.
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