Masi Sofia, Mastria Rosanna, Scarfiello Riccardo, Carallo Sonia, Nobile Concetta, Gambino Salvatore, Sibillano Teresa, Giannini Cinzia, Colella Silvia, Listorti Andrea, Cozzoli P Davide, Rizzo Aurora
CNR NANOTEC - Institute of Nanotechnology, Polo di Nanotecnologia, c/o Campus Ecotekne, Via Monteroni, 73100 Lecce, Italy.
Phys Chem Chem Phys. 2018 Apr 25;20(16):11396-11404. doi: 10.1039/c8cp00645h.
Thanks to their high stability, good optoelectronic and extraordinary electrochromic properties, tungsten oxides are among the most valuable yet underexploited materials for energy conversion applications. Herein, colloidal one-dimensional carved nanocrystals of reduced tungsten trioxide (WO3-x) are successfully integrated, for the first time, as a hole-transporting layer (HTL) into CH3NH3PbI3 perovskite solar cells with a planar inverted device architecture. Importantly, the use of such preformed nanocrystals guarantees the facile solution-cast-only deposition of a homogeneous WO3-x thin film at room temperature, allowing achievement of the highest power conversion efficiency ever reported for perovskite solar cells incorporating raw and un-doped tungsten oxide based HTL.
由于其高稳定性、良好的光电性能和非凡的电致变色特性,氧化钨是能量转换应用中最有价值但尚未得到充分利用的材料之一。在此,首次成功地将一维胶体状的还原三氧化钨(WO3-x)刻蚀纳米晶体作为空穴传输层(HTL)集成到具有平面倒置器件结构的CH3NH3PbI3钙钛矿太阳能电池中。重要的是,使用这种预制纳米晶体可确保在室温下仅通过溶液浇铸就轻松沉积均匀的WO3-x薄膜,从而实现了采用基于未掺杂的原始氧化钨的HTL的钙钛矿太阳能电池所报道的最高功率转换效率。