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Electrochemical and photovoltaic properties of highly efficient solar cells with cobalt/zinc phthalocyanine sensitizers

机译:含钴/锌酞菁敏化剂的高效太阳能电池的电化学和光伏性能

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The cyclic voltammetry studies indicated that the HOMO and LUMO energy levels of three sensitized metallophthalocyanines could ensure efficient electron injection and thermodynamically favorable dye regeneration. The S-bridged 4-mercaptobenzoic acid substituted cobalt(II) phthalocyanine (4-MKBa-CoPc) sensitized solar cell devices possessed a short-circuit photocurrent density of 9.70 mA/cm(2), an open-circuit voltage of 0.88 V, and a fill factor of 0.49, corresponding to an overall conversion efficiency of 4.18% under standard AM 1.5 sun light. The present results demonstrated that the cobalt(II) phthalocyanine derivative had dramatically higher solar cell efficiency value as compared to zinc(II) phthalocyanine and as a linker atom, instead of oxygen linker, sulfur atoms slightly improved solar cell efficiency. The above results indicated that a low cost sensitizer made up of symmetrically substituted phthalocyanine with an earth abundant metal at the inner core can reach sufficiently high solar cell efficiency when compared with the alternative sensitizers for DSSCs applications.
机译:循环伏安法研究表明,三种敏化金属酞菁的HOMO和LUMO能级可确保有效的电子注入和热力学上有利的染料再生。 S桥联的4-巯基苯甲酸取代的酞菁钴(II)(4-MKBa-CoPc)敏化太阳能电池器件的短路光电流密度为9.70 mA / cm(2),开路电压为0.88 V,填充系数为0.49,对应于标准AM 1.5阳光下的总转换效率为4.18%。本结果表明,与锌(II)酞菁相比,钴(II)酞菁衍生物具有显着更高的太阳能电池效率值,并且作为连接原子而不是氧连接子,硫原子略微提高了太阳能电池效率。上述结果表明,与用于DSSCs的替代敏化剂相比,由对称取代的酞菁与内核处富含稀土的金属组成的低成本敏化剂可以达到足够高的太阳能电池效率。

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