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首页> 外文期刊>Solar Energy >Superior light harnessing and charge injection kinetics utilizing mirror-like nano cuboidal ceria coupled with reduced graphene oxide in zinc oxide nanoparticle based photovoltaics
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Superior light harnessing and charge injection kinetics utilizing mirror-like nano cuboidal ceria coupled with reduced graphene oxide in zinc oxide nanoparticle based photovoltaics

机译:优越的光线利用和充电注入动力学利用镜像纳米立方体偶联,氧化锌基氧化锌的光伏光伏中的氧化铟烯氧化物

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Efficiency in nanoparticle based photovoltaics is limited by optical transparency, light absorption as well as detrimental back transfer of electron at the hetero-interfaces. Three dimensional (3D) microanostructures with excellent light scattering properties play pivotal role in light harvesting efficiency in DSSCs. Present study deals with the design and development of ternary hybrid photoanode utilizing high quality mirror like nano-cuboidal ceria (CeO2 NC) and 2D- reduced graphene oxide (RGO) sheets in conjunction with ZnO nanoparticle. A similar to 6% power conversion efficiency has been achieved for photoanode with optimized CeO2 NC loaded with 1 wt% RGO into ZnO NP. CeO2 NC owing to its size and high quality mirror like facets provides a better light harvesting by multiple interactions of incident photon with the absorber as revealed by UV-Vis diffused reflectance and IPCE analysis. 2D- RGO is proposed to act as an electron sink and provides faster electron transport pathway. Inclusion of 2D- RGO sheets yields a better charge injection kinetics (k(einj) similar to 2.3 x 10(8)s(-1) for ternary, 1.1 x 10(8)s(-1) for reference device) and collection at FTO as well as elevated recombination resistance (R-rec) and photo-induced electron life time (tau(e)), unveiled by Electrochemical Impedance Spectroscopic (EIS) analysis corroborates a reduced reverse tunneling of photo-injected electron at ZnO/sensitizer/redox couple interface.
机译:基于纳米粒子的光伏的效率受到光学透明度,光吸收的限制,光吸收以及在异质界面处的电子对电子转移。具有优异的光散射特性的三维(3D)微/纳米结构在DSSCs的光收集效率中起着枢转作用。目前的研究涉及使用高质量镜(CeO2 NC)和2D-氧化石墨烯氧化物(RGO)片材的高质量镜和2D-氧化铟烯氧化物(RGO)纳米颗粒的设计和开发。对于PhotoDanode的PhotoNode已经实现了类似于6%的功率转换效率,其中优化的CEO2 NC加载了1wt%RGO进入ZnO NP。 CEO2 NC由于其尺寸和高质量的镜子,如小平面,通过UV-Vis扩散反射率和IPCE分析所揭示的吸收器,通过事件光子的多次相互作用提供更好的光。建议提出2D-Rgo作为电子水槽,提供更快的电子传输途径。包含2D-RGO片材,产生更好的电荷注入动力学(K(eInj),类似于2.3×10(8)s(-1)的三元,1.1 x 10(8)s(-1)用于参考装置)和收集在FTO和升高的重组抗性(R-R-R-R-R-R-R-R-R-R-R-R-R-R-R-R-R-R-R-R-R-))(Tau(e))中,通过电化学阻抗光谱(EIS)分析揭示了ZnO /敏化剂在光注射电子的减少的逆转隧道/ redox耦合界面。

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