Lee Seung-Hoon, Ko Seo-Jin, Eom Seung Hun, Kim Hyunjin, Kim Dong Wook, Lee Changjin, Yoon Sung Cheol
Division of Advanced Materials, Korea Research Institute of Chemical Technology, 141Gajeong-Ro, Yuseong-Gu, Daejeon 305-600, Republic of Korea.
ACS Appl Mater Interfaces. 2020 Mar 25;12(12):14244-14253. doi: 10.1021/acsami.9b22933. Epub 2020 Mar 6.
We report the synthesis of composite interlayers using alcohol-soluble polyfluorene (ASP)-wrapped single-walled carbon nanotubes (SWNTs) and their application as electron-transport layers for efficient organic solar cells. The ASP enables the individual dispersion of SWNTs in solution. The ASP-wrapped SWNT solutions are stable for 54 days without any aggregation or precipitation, indicating their very high dispersion stability. Using the ASP-wrapped SWNTs as a cathode interlayer on zinc oxide nanoparticles (ZnO NPs), a power conversion efficiency of 9.45% is obtained in PTB7-th:PCBM-based organic solar cells, which is mainly attributed to the improvement in the short circuit current. Performance enhancements of 18 and 17% are achieved compared to those of pure ZnO NPs and ASP on ZnO NPs, respectively. In addition, the composite interlayer is applied to non-fullerene-based photovoltaics with PM6:Y6, resulting in a power conversion efficiency of up to 14.37%. The type of SWNT (e.g., in terms of diameter range and length) is not critical to the improvement in the charge-transport properties. A low density of SWNTs in the film (∼1 SWNTs/μm for ASP-wrapped SWNTs) has a significant influence on the charge transport in solar cells. The improvement in the performance of the solar cell is attributed to the increased internal quantum efficiency, balanced mobility between electrons and holes, and minimized charge recombination.
我们报道了使用醇溶性聚芴(ASP)包裹的单壁碳纳米管(SWNTs)合成复合中间层及其作为高效有机太阳能电池电子传输层的应用。ASP使SWNTs能够在溶液中单独分散。ASP包裹的SWNT溶液在54天内保持稳定,没有任何聚集或沉淀,表明其具有非常高的分散稳定性。在基于PTB7-th:PCBM的有机太阳能电池中,使用ASP包裹的SWNTs作为氧化锌纳米颗粒(ZnO NPs)上的阴极中间层,获得了9.45%的功率转换效率,这主要归因于短路电流的提高。与纯ZnO NPs和ZnO NPs上的ASP相比,性能分别提高了18%和17%。此外,该复合中间层应用于基于PM6:Y6的非富勒烯光伏电池,功率转换效率高达14.37%。SWNT的类型(例如,在直径范围和长度方面)对电荷传输性能的提高并不关键。薄膜中低密度的SWNTs(ASP包裹的SWNTs约为1根SWNTs/μm)对太阳能电池中的电荷传输有显著影响。太阳能电池性能的提高归因于内部量子效率的提高、电子和空穴之间平衡的迁移率以及电荷复合的最小化。