Graduate Institute of Electronics Engineering, National Taiwan University, Taipei 106, Taiwan.
ACS Nano. 2010 Oct 26;4(10):5849-54. doi: 10.1021/nn101817s.
A hybrid colloidal ZnS nanoparticles/Si nanotips p-n active layer has been demonstrated to have promising potential for efficient solar spectrum utilization in crystalline silicon-based solar cells. The hybrid solar cell shows an enhancement of 20% in the short-circuit current and approximately 10% in power conversion efficiency compared to its counterpart without integrating ZnS nanoparticles. The enhancement has been investigated by external quantum efficiency, photoluminescence excitation spectrum, photoluminescence, and reflectance to distinct the role of ZnS quantum dots for light harvesting. It is concluded that ZnS nanoparticles not only act as frequency downconversion centers in the ultraviolet region but also serve as antireflection coating for light trapping in the measured spectral regime. Our approach is ready to be extended to many other material systems for the creation of highly efficient photovoltaic devices.
一种ZnS 纳米粒子/硅纳米尖的杂化胶体 p-n 活性层已被证明在基于晶体硅的太阳能电池中具有高效利用太阳光谱的巨大潜力。与未集成 ZnS 纳米粒子的同类电池相比,该杂化太阳能电池的短路电流提高了 20%,功率转换效率提高了约 10%。通过外部量子效率、光致发光激发光谱、光致发光和反射率对其进行了研究,以区分 ZnS 量子点在光捕获中的作用。研究结果表明,ZnS 纳米粒子不仅在紫外区域充当频率下转换中心,而且在测量的光谱范围内还作为抗反射涂层来捕获光。我们的方法已经准备好扩展到许多其他材料系统,以创建高效的光伏器件。