Enhancement of a-Si:H solar cell efficiency by Y2O3 : Yb3+, Er3+ near infrared spectral upconverter

Kurias K. Markose, A. R., S. P., A. Antony, M. Jayaraj
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Abstract

The optical properties of Yb3+/Er3+ doped Y2O3 upconversion phosphor and the enhancement of efficiency of a-Si:H solar cell on incorporation of upconverter are investigated. The Y2O3 host material has high corrosion resistance, thermal stability, chemical stability, low toxicity and relatively low phonon energy (≈ 500 cm-1). Y2O3:Yb3+ (x %): Er3+ (y %) upconversion nanophosphors with different dopant concentrations were synthesized via simple hydrothermal method followed by a heat treatment at 1200°C for 12 hrs. Highly crystalline, quasi-spherical, body centered cubic Y2O3 structure was obtained. The structure, phase and morphology of the nanocrystals were determined using x-ray diffraction and SEM. Following pumping at 980 nm two dominant emission bands were observed at about 550 nm(green) and 660 nm(red), corresponding to 2H11/2, 4S3/2 → 4I15/2 and 4F9/2 → 4I15/2 transitions respectively. The dependence of emission intensity on pump power shows that the mechanism involved is two photon absorption. The upconversion phosphor along with a binder is coupled behind the a-Si:H solar cell which absorbs transmitted sub-band-gap photons and emits back the upconverted visible light which can be absorbed by the solar cell. Under suitable intensity of illumination the solar cell short circuit current is found to be increased on adding the upconversion layer.
Y2O3: Yb3+, Er3+近红外光谱上转换器提高a-Si:H太阳能电池效率
研究了Yb3+/Er3+掺杂Y2O3上转换荧光粉的光学性能,以及上转换器的加入对a-Si:H太阳能电池效率的提高。Y2O3主体材料具有较高的耐腐蚀性、热稳定性、化学稳定性、低毒性和相对较低的声子能量(≈500 cm-1)。采用简单水热法合成了不同掺杂浓度的Y2O3:Yb3+ (x %): Er3+ (y %)上转换纳米荧光粉,并在1200℃下热处理12 h。得到了高度结晶、准球形、体心立方的Y2O3结构。利用x射线衍射和扫描电镜对纳米晶体的结构、物相和形貌进行了表征。在980 nm处泵浦后,在550 nm(绿色)和660 nm(红色)处观察到两个主要的发射波段,分别对应于2H11/2、4S3/2→4I15/2和4F9/2→4I15/2跃迁。发射强度随泵浦功率的变化表明其机制为双光子吸收。上转换荧光粉与粘合剂耦合在a- si:H太阳能电池后面,该太阳能电池吸收传输的亚带隙光子并发射回可被太阳能电池吸收的上转换可见光。在适当的光照强度下,增加上转换层可以增加太阳能电池的短路电流。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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