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首页> 外文期刊>Scientific reports. >Whispering Gallery Mode Enabled Efficiency Enhancement: Defect and Size Controlled CdSe Quantum Dot Sensitized Whisperonic Solar Cells
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Whispering Gallery Mode Enabled Efficiency Enhancement: Defect and Size Controlled CdSe Quantum Dot Sensitized Whisperonic Solar Cells

机译:耳语画廊模式可提高效率:缺陷和尺寸可控的CdSe量子点敏化的耳语太阳能电池

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A synergetic approach of employing smooth mesoporous TiO2 microsphere (SμS-TiO2)–nanoparticulate TiO2 (np-TiO2) composite photoanode, and size and defect controlled CdSe quantum dots (QD) to achieve high efficiency (η) in a modified Gr?tzel solar cell, quantum dot sensitized whisperonic solar cells (QDSWSC), is reported. SμS-TiO2 exhibits whispering gallery modes (WGM) and assists in enhancing the light scattering. SμS-TiO2 and np-TiO2 provide conductive path for efficient photocurrent charge transport and sensitizer loading. The sensitizer strongly couples with the WGM and significantly enhances the photon absorption to electron conversion. The efficiency of QDSWSC is shown to strongly depend on the size and defect characteristics of CdSe QD. Detailed structural, optical, microstructural and Raman spectral studies on CdSe QD suggest that surface defects are prominent for size ~2.5?nm, while the QD with size??4.5?nm are well crystalline with lower surface defects. QDSWSC devices exhibit an increase in η from ≈0.46% to η?≈?2.74% with increasing CdSe QD size. The reported efficiency (2.74%) is the highest compared to other CdSe based QDSSC made using TiO2 photoanode and I?/I3? liquid electrolyte. The concept of using whispering gallery for enhanced scattering is very promising for sensitized whisperonic solar cells.
机译:一种协同的方法,采用光滑的介孔TiO2微球(SμS-TiO2)-纳米颗粒TiO2(np-TiO2)复合光电阳极,以及尺寸和缺陷控制的CdSe量子点(QD)在改进的Gr?tzel太阳电池中实现高效率(η)电池,量子点敏化的回声太阳能电池(QDSWSC),据报道。 SμS-TiO2表现出回音壁模式(WGM),并有助于增强光散射。 SμS-TiO2和np-TiO2为有效的光电流电荷传输和敏化剂负载提供了导电路径。敏化剂与WGM强烈耦合,并显着增强了光子吸收到电子的转化。 QDSWSC的效率在很大程度上取决于CdSe QD的尺寸和缺陷特征。 CdSe QD的详细结构,光学,微观结构和拉曼光谱研究表明,表面缺陷在〜2.5?nm的尺寸处较为突出,而尺寸≥>?4.5?nm的QD则具有良好的结晶性,且表面缺陷较低。随着CdSe QD尺寸的增加,QDSWSC器件的η从约0.46%增加到η?≈?2.74%。与使用TiO2光电阳极和I2 / I3 +的其他基于CdSe的QDSSC相比,报道的效率(2.74%)最高。液体电解质。使用耳语通道增强散射的概念对于敏化的耳语太阳能电池非常有前途。

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