Improved PSi/c-Si and Ga/PSi/c-Si nanostructures dependent solar cell efficiency

被引:0
作者
Haider A. Kadhum
Wafaa Mahdi Salih
Ahmed Mahdi Rheima
机构
[1] Mustansiriyah University,Departement of Physics, College of Science
[2] Wasit University,Departement of Chemistry, College of Science
来源
Applied Physics A | 2020年 / 126卷
关键词
Porous silicon; GaNPs; Surface morphology; Photoluminescence; Solar cell;
D O I
暂无
中图分类号
学科分类号
摘要
Nanometre size semiconductors have been a topic of great interest. Porous silicon surfaces have been fabricated by photoelectrochemical etching for n-type silicon wafers. The objective of this paper focuses on the investigation of the effecting of deposited p-Ga/n-PSi on the performance of silicon solar cells. Gallium thin layer (400 nm) doped n-type porous silicon has been Determined by photoluminescence spectroscopy. Ga doping process was carried out by a physical vapor deposition technique and has subsequently been annealed at 1100 °C for 3 h. The surface morphology resulting from this process was observed by scanning electron microscopy. The measured spectra illustrate that the luminescence peak of PSi-doped Ga was shifted strongly to a shorter wavelength. One luminescence band appears at the peak of about ~ 612 nm for PSi/c-Si; while the photoluminescence spectrum of Ga/PSi/c-Si is produced by two light bands with peaks about ~ 435 and ~ 830 nm. The fabricated solar cell showed good photovoltaic properties were the conversion efficiency increased from (12.25 to 14.8%) and the filling factor increased from (79.47–82.33) in comparison with other solar cells.
引用
收藏
相关论文
共 45 条
[1]  
Zacharias M(2020)Temperature dependence of the optical properties of silicon nanocrystals Phys. Rev. B. 101 245122-56
[2]  
Kelires PC(2020)All-silicon subwavelength structural coloration fabricated through proton beam writing and reactive ion etching Nucl. Instrum. Methods Phys. Res. Sect. B 15 52-25771
[3]  
Gong J(2019)Two-dimensional group-VA nanomaterials beyond black phosphorus: synthetic methods, properties, functional nanostructures and applications J. Mater. Chem. A. 7 25712-79
[4]  
Jin H(2020)Design, fabrication and characterization of n-Si columnar structures for solar cell applications Nanosci. Nanotechnol-Asia. 10 74-8
[5]  
Yang C(2020)Tellurium as a successor of silicon for extremely scaled nanowires a first-principles study npj 2D Mater. Appl. 4 1-243
[6]  
Bettiol AA(2020)FEM simulation on elastic parameters of porous silicon with different pore shapes Int. J. Solids Struct. 1 238-75
[7]  
van Kan JA(2020)Pore-size dependence of the heat conduction in porous silicon and phonon spectral energy density analysis Phys. Lett. A 29 126503-2077
[8]  
Gui R(2018)Self-assemply of highly ordredr plasmonic callium nanoparticles driven by nanopatterning Nano Futures 2 041001-38611
[9]  
Jin H(2017)Effectof Ga seeding layer on formation of epitaxial Y-shapedGaN nanoparticles on silicon J. Phys. Conf. 917 032040-undefined
[10]  
Sun Y(2016)Enhancement of solar cell performance based on porous silicon J Nanosci. Technol. 2 73-undefined