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使用CdSe/ZnS核壳量子点实现能量下移的硅太阳能电池中,核心量子点尺寸对功率转换效率的影响。

Effect of core quantum-dot size on power-conversion-efficiency for silicon solar-cells implementing energy-down-shift using CdSe/ZnS core/shell quantum dots.

作者信息

Baek Seung-Wook, Shim Jae-Hyoung, Seung Hyun-Min, Lee Gon-Sub, Hong Jin-Pyo, Lee Kwang-Sup, Park Jea-Gun

机构信息

Department of Electronics and Computer Engineering, Hanyang University, Seoul, 133-791, Republic of Korea.

出版信息

Nanoscale. 2014 Nov 7;6(21):12524-31. doi: 10.1039/c4nr02472a.

Abstract

Silicon solar cells mainly absorb visible light, although the sun emits ultraviolet (UV), visible, and infrared light. Because the surface reflectance of a textured surface with SiNX film on a silicon solar cell in the UV wavelength region (250-450 nm) is higher than ∼27%, silicon solar-cells cannot effectively convert UV light into photo-voltaic power. We implemented the concept of energy-down-shift using CdSe/ZnS core/shell quantum-dots (QDs) on p-type silicon solar-cells to absorb more UV light. CdSe/ZnS core/shell QDs demonstrated clear evidence of energy-down-shift, which absorbed UV light and emitted green-light photoluminescence signals at a wavelength of 542 nm. The implementation of 0.2 wt% (8.8 nm QDs layer) green-light emitting CdSe/ZnS core/shell QDs reduced the surface reflectance of the textured surface with SiNX film on a silicon solar-cell from 27% to 15% and enhanced the external quantum efficiency (EQE) of silicon solar-cells to around 30% in the UV wavelength region, thereby enhancing the power conversion efficiency (PCE) for p-type silicon solar-cells by 5.5%.

摘要

硅太阳能电池主要吸收可见光,尽管太阳发射紫外线(UV)、可见光和红外线。由于在紫外线波长区域(250 - 450纳米)带有SiNX膜的硅太阳能电池上的纹理表面的表面反射率高于约27%,硅太阳能电池无法有效地将紫外线转化为光伏电力。我们在p型硅太阳能电池上使用CdSe/ZnS核壳量子点(QDs)实现了能量下移的概念,以吸收更多紫外线。CdSe/ZnS核壳量子点证明了能量下移的明显证据,其吸收紫外线并发射波长为542纳米的绿色光致发光信号。在硅太阳能电池上带有SiNX膜的纹理表面上,实施0.2重量%(8.8纳米量子点层)的绿色发光CdSe/ZnS核壳量子点,将表面反射率从27%降低到15%,并在紫外线波长区域将硅太阳能电池的外量子效率(EQE)提高到约30%,从而使p型硅太阳能电池的功率转换效率(PCE)提高了5.5%。

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