AI 中文总结
本文研究聚苯胺对钙钛矿太阳能电池性能的提升作用,对比氧化石墨烯、还原氧化石墨烯,发现还原氧化石墨烯使功率转换效率提升36.8%,验证了该方法的有效性。
AI 中文摘要
本文研究聚苯胺作为导电聚合物在钙钛矿太阳能电池活性层中的作用,通过将聚苯胺引入传输层制备样品,评估其对提升效率与导电性的影响。该聚合物应用于电池结构的不同层后,稳定性与性能均得到改善。鉴于聚苯胺具有高掺杂能力,本文对其进行了详细考察,重点关注两种氧化掺杂类型及其在空穴传输层中的集成情况。选取氧化石墨烯和还原氧化石墨烯作为对比模型,将其性能与标准聚苯胺配置进行对比评估。实验室结果显示,采用氧化石墨烯时,功率转换效率提升17.5%;采用还原氧化石墨烯时,功率转换效率提升36.8%。此外,短路电流密度分别提升9.8%和23.1%。这些发现与该领域现有研究一致,验证了该方法的有效性。
英文摘要
This article investigates the role of polyaniline as a conductive polymer in the active layer of perovskite solar cells. Samples were created by incorporating polyaniline into the transport layers to assess its impact on enhancing efficiency and conductivity. The application of this polymer across various layers of the cell structure led to improved stability and performance. Given its high doping capability, polyaniline was examined in detail, particularly focusing on two types of oxidation doping and its integration into the hole transport layer. Graphene oxide and reduced graphene oxide were chosen as comparative models, and their performance was evaluated against the standard polyaniline configuration. Laboratory results revealed that power conversion efficiency increased by 17.5% with graphene oxide and by 36.8% with reduced graphene oxide. Furthermore, short-circuit current density improved by 9.8% and 23.1%, respectively. These findings are consistent with existing studies in the field and support the validity of the approach.
DOI:10.11591/ijpeds.v16.i4.pp2731-2743