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光伏发电技术 储能系统 SiC器件 ★ 5.0

通过三维蛾眼结构实现硫化铅胶体量子点太阳能电池的光吸收双重增强

Dual enhancement of light harvesting in lead sulfide colloidal quantum dot solar cells through a three-dimensional moth-eye structure

语言:

中文摘要

摘要:高效的光吸收对于近红外(NIR)硫化铅(PbS)胶体量子点太阳能电池(CQDSCs)至关重要,这是一种具有宽带太阳光吸收、高稳定性、溶液可加工性和高理论效率的新兴光伏技术。然而,由于PbS量子点(QDs)本征的高折射率以及在近红外区域吸收系数不足,实现PbS CQDSCs的高效光捕获仍然具有挑战性。本文提出了一种双重增强策略,采用具有亚波长蛾眼结构的三维(3D)ZnO,同时实现宽带减反射和近红外光捕获。光学模拟证明,该策略能够构建折射率梯度,显著降低宽波长范围内的菲涅尔反射,并在PbS量子点低吸收波段附近产生光衍射增强效应。拟合结果表明,由于反射抑制,太阳能电池的模拟光吸收能力最高可提升15%,特别是在760–900 nm波段,进一步得益于衍射效应,该提升幅度可达60%。通过微球模板法构建ZnO结构,实验验证了该双重增强策略的有效性,在AM1.5G标准光照下,PbS CQDSCs的电流密度提高了11%,而在近红外光照(>760 nm)下,电流密度提升了34%。

English Abstract

Abstract Efficient light harvesting is crucial for the near-infrared (NIR) lead sulfide (PbS) colloidal quantum dot solar cells (CQDSCs), an emerging photovoltaic technology with broad-band solar light absorption, high stability, solution processability, and high theoretical efficiency. However, achieving high light harvesting of PbS CQDSCs is still challenging because of the intrinsic high refractive index and insufficient NIR absorption coefficient of PbS quantum dots (QDs). Here, we demonstrate a dual-enhancement strategy that utilizes a three-dimensional (3D) ZnO with sub-wavelength moth-eye structure to achieve broad-band anti-reflection and NIR optical trapping simultaneously. The optical simulation proved that this strategy could create a refractive index gradient to significantly reduce Fresnel reflection over a wide wavelength range, and generate light diffraction enhancement near the low light-absorbing band of PbS QDs. The fitting results show the simulated light harvesting ability of solar cells could be enhanced by up to 15 % due to the light reflection reduction, especially that at 760–900 nm, which could be further improved by 60 % due to the diffraction effect. The effect of this dual-enhancement strategy was experimentally examined by constructing ZnO using the microsphere template method, which increased the current density of PbS CQDSCs by 11 % under AM1.5G illumination and by 34 % under NIR illumination (>760 nm).
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SunView 深度解读

该三维蛾眼结构光捕获技术对阳光电源SG系列光伏逆变器及储能系统具有重要启示。PbS量子点太阳能电池通过亚波长结构实现宽带抗反射和近红外光陷阱的双重增强策略,可提升15%光捕获能力,近红外波段增益达60%。这一技术路径可应用于优化光伏组件端的MPPT算法,特别是弱光和近红外光谱条件下的发电效率提升。对ST系列储能变流器而言,该技术揭示的光谱响应优化思路可延伸至系统级能量管理策略,通过精细化光伏输入预测提高储能系统充放电效率。建议跟踪量子点电池商业化进程,评估与现有1500V系统的兼容性及iSolarCloud平台的数据融合潜力。