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Performance Optimization of Polymer Solar Cells Using Electrostatically Sprayed Photoactive Layers

机译:基于静电喷涂光敏层的聚合物太阳能电池性能优化

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摘要

Polymer solar cells (PSCs) are fabricated using a novel film deposition method, the electrostatic spray (e-spray) technique. Stable atomization and uniform deposition of the polymer blend by e-spray are achieved by manipulating the solution concentration, the solvent composition, and the electric field. The performance of PSCs is primarily influenced by the inherent film morphology of the e-sprayed polymer-blend active layers, which is significantly different from that of the conventional films that are formed using the spin-coating (SC) method. The intrinsically formed interfacial boundaries between the e-sprayed blend pancakes resist charge transport, which unfavorably influences device efficiency. The internal series resistance (R_s) of the PSCs that are formed using the e-spray method (e-spray-PSC) is significantly reduced by a solvent vapor soaking (SVS) treatment in addition to the conventional thermodynamic nanomorphology controls. The detailed relationship between the morphologies (film morphology and internal nanomorphology) and the R_s is revealed using impedance spectroscopy. The performance of the e-spray-PSCs is comparable to those of the PSCs that are fabricated using the SC method under identical conditions. Therefore, the e-spray method can be used to fabricate ultralow-cost PSCs, because of the performance results combined with the intrinsic advantages that the e-spray method is simple and has a low materials loss.
机译:聚合物太阳能电池 (PSC) 使用一种新型薄膜沉积方法,即静电喷雾(电子喷雾)技术制造。通过控制溶液浓度、溶剂组成和电场,通过电子喷雾实现聚合物共混物的稳定雾化和均匀沉积。PSCs的性能主要受电子喷涂聚合物共混活性层固有的薄膜形态的影响,这与使用旋涂(SC)方法形成的传统薄膜有很大不同。电子喷涂混合煎饼之间固有的界面边界可抵抗电荷传输,从而对器件效率产生不利影响。除了传统的热力学纳米形态控制外,使用电子喷雾法(e-spray-PSC)形成的PSC的内部串联电阻(R_s)通过溶剂蒸气浸泡(SVS)处理可显着降低。使用阻抗谱揭示了形貌(薄膜形貌和内部纳米形貌)与R_s之间的详细关系。e-spray-PSCs的性能与在相同条件下使用SC方法制造的PSCs相当。因此,电子喷雾法可用于制造超低成本的PSC,因为其性能结果与电子喷雾法简单且材料损耗低的内在优势相结合。

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