研究目的
Investigating the enhancement of photovoltaic characteristics in organic solar cells (OSCs) through the application of cathode interfacial layers (CIL) based on triazine/phosphine oxide units.
研究成果
The introduction of Br-PO-TAZ and CN-PO-TAZ as CILs significantly improved the photovoltaic performance and stability of both conventional and inverted organic solar cells. The enhanced performance is attributed to reduced leakage current, decreased series resistance, suppressed recombination, and efficient charge transport and collection. The CIL layers also served as an internal shield against humidity, contributing to device stability.
研究不足
The study focuses on the application of Br-PO-TAZ and CN-PO-TAZ as CILs in OSCs, with potential areas for optimization including further enhancement of PCE and exploration of other materials for CIL application.
1:Experimental Design and Method Selection:
Designed and synthesized two cathode interfacial materials, Br-PO-TAZ and CN-PO-TAZ, for application in both conventional and inverted organic solar cells.
2:Sample Selection and Data Sources:
Utilized a photoactive blend layer of PTB7 and PC71BM for both types of OSCs.
3:List of Experimental Equipment and Materials:
Applied tapping-mode AFM for film surface morphology analysis, cyclic voltammetry for determining HOMO and LUMO levels, and UV-vis absorption spectra for optical band gap calculation.
4:Experimental Procedures and Operational Workflow:
Fabricated OSCs with and without CIL layers under the same environmental conditions, measured photovoltaic performance, and analyzed device stability.
5:Data Analysis Methods:
Analyzed photovoltaic parameters (VOC, JSC, FF, PCE) and used EIS measurement to study charge recombination.
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