研究目的
Investigating the sequential deposition of a highly crystalline polymer donor and a soluble fullerene acceptor to achieve a well-defined interpenetrating network and enhanced power conversion efficiencies in bilayer polymer solar cells without the use of solvent additives.
研究成果
Sequential deposition of a highly crystalline polymer donor and a soluble fullerene acceptor can produce high-efficiency bilayer polymer solar cells without the use of solvent additives, achieving a power conversion efficiency of η ≈ 7.65%. This approach offers a promising route for the development of efficient and potentially stable polymer solar cells.
研究不足
The study focuses on a specific combination of donor and acceptor materials, and the findings may not be directly applicable to other material systems. The use of highly crystalline polymers may limit the generalizability of the approach.