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Novel hole transporting materials based on triptycene core for high efficiency mesoscopic perovskite solar cells

机译:基于三苯乙烯核心高效介性钙钛矿太阳能电池的新型空穴输送材料

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Three novel hole-conducting molecules ( T101 , T102 and T103 ) based on a triptycene core have been synthesized using short routes with high yields. The optical and electrochemical properties were tuned by modifying the functional groups, through linking the triptycene to diphenylamines via phenyl and/or thienyl groups. The mesoporous perovskite solar cells fabricated using T102 and T103 as the hole transporting material (HTM) showed a power conversion efficiency (PCE) of 12.24% and 12.38%, respectively, which is comparable to that obtained using the best performing HTM spiro-OMeTAD. The T102 based device showed higher fill factor (69.1%) and V _(oc) (1.03 V) than the spiro-OMeTAD based device (FF = 63.4%, V _(oc) = 0.976 V) whereas the T103 based device showed comparable J _(sc) (20.3 mA cm ~(?2) ) and higher V _(oc) (0.985 V) than the spiro-OMeTAD ( J _(sc) = 20.8 mA cm ~(?2) ) based cell.
机译:基于三替三萜芯的三种新型空穴导电分子(T101,T102和T103)使用具有高收率的短路合成。通过通过苯基和/或噻吩基改性三丙烯与二苯胺连接来调节光学和电化学性质。使用T102和T103制造的中孔钙钛矿太阳能电池作为空穴传输材料(HTM),分别为12.24%和12.38%的功率转换效率(PCE),其与使用最佳性能的HTM螺欧比达获得的相当。基于T102的装置显示出比螺椭圆形的装置(FF = 63.4%,V _(OC)= 0.976V)更高的填充因子(69.1%)和V _(oc)(1.03V),而基于T103的设备显示比较j _(sc)(20.3 mA cm〜(Δ2))和比螺嘟数组(j _(sc)= 20.8 mA cm〜(Δ2))的细胞更高v _(oc)(0.985V) 。

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