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The role of cation and anion dopant incorporated into a ZnO electron transporting layer for polymer bulk heterojunction solar cells

机译:阳离子和阴离子掺杂剂在聚合物本体异质结太阳能电池的ZnO电子传输层中的作用

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Doping is a widely-implemented strategy for enhancing the inherent electronic properties of charge transport layers in photovoltaic devices. A facile solution-processed zinc oxide (ZnO) and various cation and anion-doped ZnO layers were synthesized via the sol–gel method and employed as electron transport layers (ETLs) for inverted polymer solar cells (PSCs). The results indicated that all PSCs with doped ZnO ETLs exhibited better photovoltaic performance compared with the PSCs with a pristine ZnO ETL. By exploring the role of various anion and cation dopants (three compounds with the same Al ~(3+) cation: Al(acac) _(3) , Al(NO _(3) ) _(3) , AlCl _(3) and three compounds with the same Cl ~(?) anion: NH _(4) Cl, MgCl _(2) , AlCl _(3) ), we found that the work function changed to favor electronic extraction only when the Cl anion was involved. In addition, the conductivity of ZnO was enhanced more with the Al ~(3+) cation. Therefore, in inverted solar cells, doping with Al ~(3+) and Cl ~(?) delivered the best power conversion efficiency (PCE). The maximum PCE of 10.38% was achieved from the device with ZnO doped with Al ~(+) and Cl ~(?) .
机译:掺杂是一种广泛实施的策略,用于增强光伏器件中电荷传输层的固有电子性能。通过溶胶-凝胶法合成了一种简便的溶液处理氧化锌(ZnO)以及各种阳离子和阴离子掺杂的ZnO层,并将其用作倒置聚合物太阳能电池(PSC)的电子传输层(ETL)。结果表明,与具有原始ZnO ETL的PSC相比,所有掺杂ZnO ETL的PSC都具有更好的光伏性能。通过探索各种阴离子和阳离子掺杂剂的作用(三种具有相同Al〜(3+)阳离子的化合物:Al(acac)_(3),Al(NO _(3))_(3),AlCl _(3 )和三个具有相同Cl〜(?)阴离子的化合物:NH _(4)Cl,MgCl _(2)和AlCl _(3)),我们发现仅当Cl阴离子为荷时,功函数才改变为电子萃取被卷入。另外,Al〜(3+)阳离子可进一步提高ZnO的电导率。因此,在倒置太阳能电池中,掺杂Al〜(3+)和Cl〜(?)可获得最佳的功率转换效率(PCE)。由掺杂有Al〜(+)和Cl〜(?)的ZnO的器件获得的最大PCE为10.38%。

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