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Impermeable Charge Transport Layers Enable Aqueous Processing on Top of Perovskite Solar Cells

机译:不可渗透的电荷传输层可在钙钛矿太阳能电池上进行水处理

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Several applications of perovskite solar cells (PSCs) demand a semitransparent top electrode to afford top-illumination or see-through devices. Transparent conductive oxides, such as indium tin oxide (ITO), typically require postdeposition annealing at elevated temperatures, which would thermally decompose the perovskite. In contrast, silver nanowires (AgNWs) in dispersions of water would be a very attractive alternative that can be deposited at ambient conditions. Water is environmentally friendly without safety concerns associated with alcohols, such as flammability. Due to the notorious moisture sensitivity of lead-halide perovskites, aqueous processing of functional layers, such as electrodes, on top of a perovskite device stack is elusive. Here, impermeable electron transport layers (ETLs) are shown to enable the deposition of semitransparent AgNW electrodes from green aqueous dispersions on top of the perovskite cell without damage. The polyvinylpyrrolidone (PVP) capping agent of the AgNWs is found to cause a work-function shift and an energy barrier between the AgNWs and the adjacent ETL. Thus, a high carrier density (approximate to 10(18) cm(-3)) in the ETL is required to achieve well-behaved J/V characteristics free of s-shapes. Ultimately, semitransparent PSCs are demonstrated that provide an efficiency of 17.4%, which is the highest efficiency of semitransparent p-i-n perovskite solar cells with an AgNW top electrode.
机译:钙钛矿太阳能电池(PSC)的几种应用都需要半透明的顶部电极,以提供顶部照明或透视设备。透明导电氧化物,例如氧化铟锡(ITO),通常需要在高温下进行后沉积退火,这将使钙钛矿热分解。相反,在水分散体中的银纳米线(AgNWs)将是一种非常有吸引力的替代方法,可以在环境条件下沉积。水是环境友好的,没有与酒精有关的安全问题,例如易燃性。由于卤化钙钛矿对水的敏感性很差,因此在钙钛矿器件叠层顶部对功能层(例如电极)进行水处理非常困难。在这里,不可渗透的电子传输层(ETLs)可以使绿色透明水分散体在钙钛矿电池顶部沉积半透明的AgNW电极,而不会造成损坏。发现AgNW的聚乙烯吡咯烷酮(PVP)封端剂在AgNW和相邻的ETL之间引起功函数偏移和能垒。因此,需要ETL中的高载流子密度(大约10(18)cm(-3))以实现行为良好的J / V特性,而没有s形。最终,半透明的PSC被证明可以提供17.4%的效率,这是具有AgNW顶部电极的半透明p-i-n钙钛矿太阳能电池的最高效率。

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