Ji Ting, Tan Licheng, Hu Xiaotian, Dai Yanfeng, Chen Yiwang
College of Chemistry/Institute of Polymers, Nanchang University, 999 Xuefu Avenue, Nanchang 330031, China.
Phys Chem Chem Phys. 2015 Feb 14;17(6):4137-45. doi: 10.1039/c4cp04965a.
Sulfonated carbon nanotubes (S-CNTs) and sulfonated graphene (S-Gra) with superior dispersibility were successfully prepared to modify poly(3,4-ethylenedioxythiophene):poly(styrenesulfonate) (PEDOT:PSS) for applications in polymer solar cells (PSCs). The synergetic effect between S-CNTs/S-Gra and PEDOT:PSS could remove excess insulating PSS chains leading to an obvious phase separation between the PEDOT and PSS chains, which allows the formation of more conductive PEDOT channels. The PEDOT:PSS (Clevios PH 4083):S-CNTs with well-matched work function, favorable morphology, optimized hydrophobicity and superior hole mobility is demonstrated to be an excellent hole transport layer (HTL) for PSCs. However, the PEDOT:PSS (Clevios PH 4083) modified by sulfonated graphene with stacked and wrinkled lamellae as an HTL renders a rough morphology and has a negative impact on the morphology of the active layer, consequently resulting in a poor device performance. Excitingly, PEDOT:PSS (Clevios PH 1000) modified with S-Gra shows high conductivity, because the sulfonated graphene lamellae contribute to the connection between the insulator and conductive PEDOT islands and improves the charge conduction. The PH1000:S-Gra with multiple layers presents excellent electrical conductive properties and a high transmittance (sheet resistance of ∼45 Ω sq(-1) and transmittance of ∼85.5% at 550 nm), which possess great potential for its application as a transparent conductive and flexible electrode in organic electronics.
成功制备了具有优异分散性的磺化碳纳米管(S-CNTs)和磺化石墨烯(S-Gra),用于修饰聚(3,4-乙撑二氧噻吩):聚(苯乙烯磺酸盐)(PEDOT:PSS),以应用于聚合物太阳能电池(PSC)。S-CNTs/S-Gra与PEDOT:PSS之间的协同效应可以去除多余的绝缘PSS链,导致PEDOT和PSS链之间出现明显的相分离,从而形成更多的导电PEDOT通道。具有良好匹配的功函数、良好的形貌、优化的疏水性和优异的空穴迁移率的PEDOT:PSS(Clevios PH 4083):S-CNTs被证明是PSC的优异空穴传输层(HTL)。然而,用具有堆叠和皱纹薄片的磺化石墨烯修饰的PEDOT:PSS(Clevios PH 4083)作为HTL会呈现出粗糙的形貌,并对活性层的形貌产生负面影响,从而导致器件性能不佳。令人兴奋的是,用S-Gra修饰的PEDOT:PSS(Clevios PH 1000)显示出高导电性,因为磺化石墨烯薄片有助于绝缘体与导电PEDOT岛之间的连接并改善电荷传导。具有多层结构的PH1000:S-Gra具有优异的导电性能和高透光率(在550 nm处的方块电阻约为45 Ω sq(-1),透光率约为85.5%),在有机电子学中作为透明导电和柔性电极具有巨大的应用潜力。