相关期刊:《Journal of Energy and Power Engineering》《Chinese Physics B》《Journal of Southeast University(English Edition)》《Smart Grid and Renewable Energy》更多>>
supported in part by the research fund of Hanyang University(HY-202300000003126);in part by the National Research Foundation of Korea(NRF)funded by the Ministry of Science,ICT under Grants RS-2023-00209380,RS-2024-00415821,NRF-2021M3H4A6A01048300,NRF-2021M3H4A1A02051253,and NRF-2022M318A2078705;in part by the Technology Innovation Program(20018379,Development of high-reliability light-emitting fiber-based woven wearable displays)funded by the Ministry of Trade,Industry&Energy of the Republic of Korea.
While waveguide-based light concentrators offer significant advantages,their application has not been considered an interesting option for assisting multijunction or other two-terminal tandem solar cells.In this study...
supported by the National Nature Science Foundation of China(Grant No.62004126);Shanghai Rising-Star Program(Grant No.19QB1403800).
Multijunction solar cells are the highest efficiency photovoltaic devices yet demonstrated for both space and terrestrial applications.In recent years five-junction cells based on the direct semiconductor bonding tech...
The solar power conversion efficiency of a gallium indium phosphide(GaInP)/silicon(Si)tandem solar cell has been investigated by means of a physical device simulator considering both mechanically stacked and monolithi...
This paper presents a performance study of silicon-based multi-junction (MJ) solar cell which is produced by Spectrolab is the most efficient solar cell in the world, with a record efficiency of over 40%. The I-V char...
This work investigates the performance of combined hybrid high concentrated photovoltaic/thermal collector (HCPV/T) in Kuwait harsh climate. The proposed system consists of triple junction solar cells (InGaP/InGaAs/Ge...
Acknowledgements This work was supported by the National Natural Science Foundation of China (Nos. 51422206 and 51372159), 1000 Talents Plan for Young Researchers, "Shuangchuang" Program of Jiangsu Province, a Project Supported by Jiangsu Science and Technology Committee for Distinguished Young Scholars (No. BK20140009), the National Basic Research Program of China (973 Program) (No. 2015CB358600) and a Project Funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD). We also acknowledge Jiangsu Nata Opto- electronic Materials Co. Ltd. for providing high purity TDMAT precursor for deposition of TiO2 thin films.
Photoelectrodes with a specific structure and composition have been proposed for improving the efficiency of solar water splitting. Here, a novel multijunction structure was fabricated, with Si nanowires as cores, ZnI...
supported by the National Natural Science Foundation of China(Grant Nos.91233202,21173260,and 51072221);the National Basic Research Program of China(Grant No.2012CB932903)
Based on the facts that multijunction solar cells can increase the efficiency and concentration can reduce the cost dramatically, a special design of parallel multijunction solar cells was presented. The design employ...
A new type homogeneous planar PC (photoelectric converter) on the basis of multijunction semiconductor n+-p-p+-n+-p-p+-...-n+-p-p+ structure has been investigated. The entire structure is a cascade PC consisti...
In this paper we consider the stationary multijunction device model with the avalanche effect. Using the singular perturbation method, an approximation to the current voltage curve is obtained. The cause and the condi...
In this paper,the bifurcation solution of stationary multijunction devicemodel is analyzed.The slow variable is introduced for the first time as an importantperanieter which gives the conditions such that the bifurcat...