...
首页> 外文期刊>RSC Advances >Non-stoichiometric Cu–In–S@ZnS nanoparticles produced in aqueous solutions as light harvesters for liquid-junction photoelectrochemical solar cells
【24h】

Non-stoichiometric Cu–In–S@ZnS nanoparticles produced in aqueous solutions as light harvesters for liquid-junction photoelectrochemical solar cells

机译:非化学计量的Cu-in-S @ ZnS纳米颗粒在水溶液中制备,作为用于液态结光电子化学太阳能电池的光收割机

获取原文
   

获取外文期刊封面封底 >>

       

摘要

A direct “green” aqueous synthesis of mercapto acetate-stabilized copper indium sulfide (CIS) nanoparticles (NPs) and core/shell CIS@ZnS NPs of a varied composition under ambient conditions and a temperature lower than 100 °C is reported. The CIS@ZnS NPs can be anchored to the surface of nanocrystalline FTO/TiO _(2) films without additional purification or ligand exchange steps yielding visible-light-sensitive heterostructures ready for using as photoanodes in the liquid-junction solar cells. The highest photoelectrochemical activity in a three-electrode cell was demonstrated by a TiO _(2) /CIS@ZnS heterostructure with atomic Cu?:?In?:?S and Zn?:?Cu ratios of 1?:?5?:?10 and 1?:?1. The optimized TiO _(2) /CIS@ZnS photoanodes were tested in two-electrode solar cells with aqueous polysulfide electrolyte and TiO _(2) /Cu _(2) S heterostructures produced by a photo-assisted method as counter-electrodes. Under illumination by a 30 mW cm ~(?2) xenon lamp, the optimized cells showed the average light conversion efficiency of 8.15%, the average open-circuit voltage of ?0.6 V and the average fill factor of 0.42. The cells revealed excellent stability and reproducibility of photoelectrochemical parameters with around one percent variation of the light conversion efficiency around an average value for six identical solar cells.
机译:据报道,直接的“绿色”水合成巯基稳定的铜铟硫化物(CIS)纳米颗粒(NPS)和核心/壳CIS @ ZnS NP,在环境条件下和低于100℃的温度低于100℃。 CIS @ ZnS NPS可以锚定到纳米晶FTO / TiO _(2)膜的表面而无需额外的纯化或配体交换步骤,得到可见光敏感性的异质结构,其准备在液态结太阳能电池中用作光阳极。用原子Cu的TiO _(2)/ CIS @ ZnS异质结构证明了三电极细胞中最高的光电化学活性?:?在?:?S和Zn?:?Cu比率为1?:?5 ?: ?10和1?:?1。优化的TiO _(2)/ CIS @ ZNS光电在双电极太阳能电池中用多硫化物电解质和TiO _(2)/ Cu _(2)的异质结构在两电极太阳能电池中进行测试,其异质结构作为反电极产生的光辅助方法。在照明30mM〜(Δ2)氙灯下,优化的细胞显示平均光转化效率为8.15%,平均开路电压为0.6 V和平均填充因子0.42。该细胞揭示了光电化学参数的优异稳定性和再现性,其围绕六个相同太阳能电池的平均值左右的光转换效率的一个百分率变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号