Green synthesis of CuO nanoparticles with leaf extract of Calotropis gigantea and its dye-sensitized solar cells applications

被引:257
作者
Sharma, Jitendra Kumar [1 ]
Akhtar, M. Shaheer [2 ]
Ameen, S. [3 ]
Srivastava, Pratibha [1 ]
Singh, Gurdip [1 ]
机构
[1] DDU Gorakhpur Univ, Dept Chem, Gorakhpur, Uttar Pradesh, India
[2] Chonbuk Natl Univ, New & Renewable Energy Mat Dev Ctr NewREC, Jeonju, South Korea
[3] Chonbuk Natl Univ, Sch Chem Engn, Solar Energy Res Ctr, Energy Mat & Surface Sci Lab, Jeonju 561756, South Korea
关键词
Green synthesis; CuO; Calotropis gigantea; Counter electrode; Dye sensitized solar cells; NANOCRYSTALLINE COPPER-OXIDE; THIN-FILMS; GROWTH; ELECTRODES; EFFICIENCY;
D O I
10.1016/j.jallcom.2015.01.172
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Green synthesized copper oxide (CuO) nanoparticles (NPs) were employed as electrocatalytic materials for the fabrication of counter electrode in dye sensitized solar cells (DSSCs). Uniform CuO NPs were synthesized by the leaves extract of Calotropis gigantea plant in aqueous medium through green synthesis. The synthesized CuO NPs were extensively characterized in terms of morphology, crystalline nature, structural, electrochemical and photovoltaic properties using various experimental tools. The synthesized CuO NPs possessed a well crystalline nature which was perfectly matched to monoclinic structure of bulk CuO. For DSSC application, a thin film of synthesized CuO NPs was prepared by the paste of CuO NPs and coated onto FTO glass using glass rod. The cyclovoltametry measurement revealed that CuO NPs based thin film showed reasonably good surface for the reduction of triiodide ions in redox electrolyte, suggesting its good electrocatalytic activity toward the iodide ions. Moderately high solar to electrical energy conversion efficiency of similar to 3.4% along with high short circuit current density (J(SC)) of similar to 8.13 mA/cm(2), open circuit voltage (V-OC) of similar to 0.676 V and fill factor (FF) of 0.62 was recorded in the DSSC fabricated with synthesized CuO NPs based counter electrode. (C) 2015 Elsevier B.V. All rights reserved.
引用
收藏
页码:321 / 325
页数:5
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