Cadmium telluride for high-efficiency solar cells

被引:0
作者
Maronchuk I.I. [1 ]
Sanikovich D.D. [1 ]
Davydova E.V. [1 ]
Tabachkova N.Yu. [2 ]
机构
[1] ADV-Engineering, LLC, 3B 1st Lyusinovsky Lane, Moscow
[2] Prokhorov General Physics Institute of the Russian Academy of Sciences, 38 Vavilov Str, Moscow
来源
Modern Electronic Materials | 2023年 / 9卷 / 01期
关键词
cadmium telluride; elemental compositio; phase composition; powders; solar cell; sputter deposition; thin films;
D O I
10.3897/j.moem.9.1.103598
中图分类号
学科分类号
摘要
Problems of the synthesis of cadmium telluride powders having required purity and grain size distribution for high-ef-ficiency solar cells have been analyzed. A test batch of powders has been synthesized and used for the manufacture and study of thin-film solar cell specimens exhibiting parameters compliant with the best worldwide standards. The phase composition of the powders has been studied using X-ray diffraction. Structural analysis and elemental composition measurements have been carried out using electron microscopy. The effect of free tellurium phase in the powders on the endurance of devices manufactured from the powder has been described. We show that excess tellurium in the film specimens whose atoms are predominantly localized along grain boundaries may cause temporal degradation of the electrical properties of the manufactured solar cells due to changes in the parameters of the crystalline structure of the cadmium telluride phase which are caused in turn by changes in the stoichiometric composition of the material. Structural studies of the film specimens have not revealed differences in the film structure before and after endurance tests. A new cadmium telluride powder process route has been developed, proven and tested taking into account the advantages and drawbacks of the previously used process and experiments confirming the correctness of the technical solutions chosen have been conducted. © 2023 National University of Science and Technology MISIS.
引用
收藏
页码:9 / 14
页数:5
相关论文
共 27 条
[1]  
Shirokov I.B., Maronchuk I.I., Methods for determining water content in oil and petroleum products, residual content of oil products in water, Energeticheskie ustanovki i tekhnologii, 3, 4, pp. 130-145, (2017)
[2]  
Maronchuk I.I., Sanikovich D.D., Mironchuk V.I., Solar cells: current state and development prospects, ENERGETIKA. Proceedings of CIS higher education institutions and power engineering associations, 62, 2, pp. 105-123, (2019)
[3]  
Shirokov I.B., Maronchuk I.I., The current state of development of the main types of non-nuclear anaerobic motor and energy systems (re-view), Energeticheskie ustanovki i tekhnologii, 5, 2, pp. 37-50, (2019)
[4]  
Jager-Waldau А., PV status report 2018, (2018)
[5]  
Luceno-Sanchez J.A., Diez-Pascual A.M., Capilla R.P., Materials for photovoltaics: state of art and recent developments, International Journal of Molecular Sciences, 20, 4, (2019)
[6]  
Jager-Waldau А., PV status report 2019, (2019)
[7]  
Jager-Waldau А., PV status report 2017, (2017)
[8]  
Meyer P.V., Technical and economic optimization for CdTe PV at the turn of the millennium, Progress in Photovoltaics Research and Applications, 8, 1, pp. 161-169, (2000)
[9]  
Bonnet D., Meyers P., Cadmium-telluride – material for thin film solar cells, Journal of Materials Research, 13, 10, pp. 2740-2753, (1998)
[10]  
Coutts T.J., Meakin J.D., Current Topic in Photovoltaics, (1985)