Surface Technology Division, Korea Institute of Materials Science , Changwon, Gyeongnam 641-831, Republic of Korea.
ACS Appl Mater Interfaces. 2013 Oct 23;5(20):9933-41. doi: 10.1021/am401845n. Epub 2013 Oct 4.
We report that significantly more transparent yet comparably conductive AgOx films, when compared to Ag films, are synthesized by the inclusion of a remarkably small amount of oxygen (i.e., 2 or 3 atom %) in thin Ag films. An 8 nm thick AgOx (O/Ag=2.4 atom %) film embedded between 30 nm thick ITO films (ITO/AgOx/ITO) achieves a transmittance improvement of 30% when compared to a conventional ITO/Ag/ITO electrode with the same configuration by retaining the sheet resistance in the range of 10-20 Ω sq(-1). The high transmittance provides an excellent opportunity to improve the power-conversion efficiency of organic solar cells (OSCs) by successfully matching the transmittance spectral range of the electrode to the optimal absorption region of low band gap photoactive polymers, which is highly limited in OSCs utilizing conventional ITO/Ag/ITO electrodes. An improvement of the power-conversion efficiency from 4.72 to 5.88% is achieved from highly flexible organic solar cells (OSCs) fabricated on poly(ethylene terephthalate) polymer substrates by replacing the conventional ITO/Ag/ITO electrode with the ITO/AgOx/ITO electrode. This novel transparent electrode can facilitate a cost-effective, high-throughput, room-temperature fabrication solution for producing large-area flexible OSCs on heat-sensitive polymer substrates with excellent power-conversion efficiencies.
我们报告说,与银膜相比,通过在薄银膜中加入少量氧(即 2 或 3 个原子%),可以合成出具有更高透明度但导电性能相当的氧化银(AgOx)膜。在 30nm 厚的 ITO 薄膜(ITO/AgOx/ITO)之间嵌入 8nm 厚的 AgOx(O/Ag=2.4 原子%)薄膜,与具有相同配置的传统 ITO/Ag/ITO 电极相比,在保持 10-20 Ω sq(-1) 的方阻范围内,透光率提高了 30%。高透光率为提高有机太阳能电池(OSC)的功率转换效率提供了极好的机会,通过成功将电极的透光光谱范围与低带隙光活性聚合物的最佳吸收区域相匹配,从而极大地限制了利用传统 ITO/Ag/ITO 电极的 OSC。通过用 ITO/AgOx/ITO 电极代替传统的 ITO/Ag/ITO 电极,从在聚对苯二甲酸乙二醇酯(PET)聚合物衬底上制造的高度灵活的有机太阳能电池(OSC)中,实现了从 4.72%到 5.88%的功率转换效率的提高。这种新型透明电极可以为在对热敏感的聚合物衬底上制造大面积灵活的 OSC 提供一种具有成本效益、高吞吐量、室温制造解决方案,并具有出色的功率转换效率。