材料科学
量子点
光电子学
太阳能电池
肖特基势垒
硒化镉
纳米技术
量子效率
量子点太阳电池
等离子太阳电池
聚合物太阳能电池
二极管
作者
Ha Trang Nguyen,Thanh Thao Tran,Vishwa Bhatt,Manjeet Kumar,Jinwon Song,Ju‐Hyung Yun
出处
期刊:Applied sciences
[Multidisciplinary Digital Publishing Institute]
日期:2021-12-22
卷期号:12 (1): 83-83
被引量:5
摘要
Recently, in the solar energy society, several key technologies have been reported to meet a grid parity, such as cost-efficient materials, simple processes, and designs. Among them, the assistive plasmonic of metal nanoparticles (MNPs) integrating with the downshifting on luminescent materials attracts much attention. Hereby, Si-based Schottky junction solar cells are fabricated and examined to enhance the performance. CdSe/ZnS quantum dots (QDs) with different gold nanoparticles (Au NPs) sizes were incorporated on a Si light absorbing layer. Due to the light scattering effect from plasmonic resonance, the sole Au NPs layer results in the overall enhancement of Si solar cell’s efficiency in the visible spectrum. However, the back-scattering and high reflectance of Au NPs lead to efficiency loss in the UV region. Therefore, the QDs layer acting as a luminescent downshifter is deployed for further efficiency enhancement. The QDs layer absorbs high-energy photons and re-emits lower energy photons in 528 nm of wavelength. Such a downshift layer can enhance the overall efficiency of Si solar cells due to poor intrinsic spectral response in the UV region. The optical properties of Au NPs and CdSe QDs, along with the electrical properties of solar cells in combination with Au/QD layers, are studied in depth. Moreover, the influence of Au NPs size on the solar cell performance has been investigated. Upon decreasing the diameters of Au NPs, the blueshift of absorbance has been observed, cooperating with QDs, which leads to the improvement of the quantum efficiency in the broadband of the solar spectrum.
科研通智能强力驱动
Strongly Powered by AbleSci AI