固体中的对称性破坏电荷分离:四基二胺多晶片
Carolyn E Ramirez1,2, Su Chen2,3, Natalia E Powers-Riggs2,3
1Department of Chemical and Biological Engineering, Northwestern University, Evanston, Illinois 60208-3113, United States.
有机光伏中的破坏对称的电荷分离 (SB-CS) 增强了电压. H-tpPDI膜显示了近乎定量的SB-CS,其性能优于八TPDI,并为高效的有机太阳能电池提供了希望.
科学领域:
- 材料科学
- 太阳能发电
- 有机电子
背景情况:
- 通过破坏对称的电荷分离 (SB-CS) 产生电子孔对是提高有机光伏 (OPV) 开放电路电压的关键.
- 之前的研究主要集中在溶液中的分子二极体上,限制了对固态设备的适用性.
研究的目的:
- 在1,6,7,12-四氧化-3,4:9,10-二氧化碳胺 (tpPDI) 的多晶薄膜中研究SB-CS.
- 在含有 n-octyl 组 (octyl-tpPDI) 和原子 (H-tpPDI) 在 imide 原子上的薄膜之间比较 SB-CS 效率.
主要方法:
- 基TPDI和HTPDI的薄膜制造
- 用于结构分析的X射线衍射和分散.
- 暂时的吸收光谱检测激发状态的动态.
主要成果:
- 乙-tpPDI和H-tpPDI薄膜都表现出 π-π 叠加.
- 与八-tpPDI相比,H-tpPDI显示了更多的滑叠安排和分子间键.
- 奥克提尔-tpPDI显示混合单元激发和电荷转移状态 (类似于excimer).
- H-tpPDI几乎显示了定量的SB-CS.
结论:
- 分子包装和分子间相互作用显著影响tpPDI膜中的SB-CS效率.
- H-tpPDI的结构促进了高效的SB-CS,使其成为先进的有机光伏应用的有希望的材料.
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