Chung Daewon, Balamurugan Chandran, Park Byoungwook, Lee Hyeonryul, Cho Ilhyeon, Yoon Chaerin, Park Soyeon, Jo Yong-Ryun, Jeon Joonhyeon, Hong Soonil, Kwon Sooncheol
Department of Advanced Battery Convergence Engineering, Dongguk University, Seoul 04620, Republic of Korea.
Department of Energy and Materials Engineering, Dongguk University, Seoul 04620, Republic of Korea.
Nanomaterials (Basel). 2024 Mar 11;14(6):502. doi: 10.3390/nano14060502.
The bulk-heterojunction (BHJ) system that uses a π-conjugated polymer as an electron donor, and a fullerene derivative as an electron acceptor, is widely used in organic solar cells (OSCs) to facilitate efficient charge separation and extraction. However, the conventional BHJ system still suffers from unwanted phase segregation caused by the existence of significant differences in surface energy between the two BHJ components and the charge extraction layer during film formation. In the present work, we demonstrate a sophisticated control of fast film-growth kinetics that can be used to achieve a uniform distribution of donor and acceptor materials in the BHJ layer of OSCs without undesirable phase separation. Our approach involves depositing the BHJ solution onto a spinning substrate, thus inducing rapid evaporation of the solvent during BHJ film formation. The fast-growth process prevents the fullerene derivative from migrating toward the charge extraction layer, thereby enabling a homogeneous distribution of the fullerene derivative within the BHJ film. The OSCs based on the fast-growth BHJ thin film are found to exhibit substantial increases in J, fill factor, and a PCE up to 11.27 mA/cm, 66%, and 4.68%, respectively; this last value represents a remarkable 17% increase in PCE compared to that of conventional OSCs.
使用π共轭聚合物作为电子供体、富勒烯衍生物作为电子受体的本体异质结(BHJ)体系被广泛应用于有机太阳能电池(OSC)中,以促进有效的电荷分离和提取。然而,传统的BHJ体系在成膜过程中,由于两种BHJ组分与电荷提取层之间表面能存在显著差异,仍存在不必要的相分离问题。在本工作中,我们展示了一种对快速成膜动力学的精密控制,可用于在OSC的BHJ层中实现供体和受体材料的均匀分布,而不会出现不良的相分离。我们的方法包括将BHJ溶液沉积到旋转的基底上,从而在BHJ成膜过程中促使溶剂快速蒸发。快速生长过程可防止富勒烯衍生物向电荷提取层迁移,从而使富勒烯衍生物在BHJ膜内实现均匀分布。基于快速生长的BHJ薄膜的OSC的J、填充因子和光电转换效率(PCE)大幅提高,分别达到11.27 mA/cm、66%和4.68%;与传统OSC相比,最后一个值代表PCE显著提高了17%。