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Języki publikacji
Abstrakty
In this study, a solar cell with a glass/ITO/CdS/PbS/Al structure was constructed. Both window (CdS) and absorption (PbS) layers were deposited by chemical bath deposition (CBD) method. The CdS window layer was deposited on ITO-glass. The PbS nanocrystalline thin film was prepared with and without triethanolamine on CdS films at bath temperature of 25 °C. CdS and PbS nanocrystals were identified using XRD and SEM. The cells are photosensitive in a large spectral range (at visible and near infrared regions). The cell with absorbing layer obtained from the bath without TEA has higher efficiency with the following parameters: the open circuit voltage (Voc) is 275 mV, short circuit current (J sc) is 12.24 mA/cm 2, maximum voltage (V max) is 165 mV and maximum current (J max) is 7.11 mA/cm 2with the efficiency η = 1.31 %, fill factor FF is 32 % under the illumination intensity of 90 mW/cm2. The cells have an area of 0.15 cm 2.
Słowa kluczowe
Wydawca
Czasopismo
Rocznik
Tom
Strony
540--547
Opis fizyczny
Bibliogr. 19 poz., rys.
Twórcy
autor
- DepartmentofPhysics,MaraghehBranch,IslamicAzadUniversity,Maragheh,Iran
autor
- NorthwestResearchComplex,NSTRI,Bonab,Iran
autor
- NorthwestResearchComplex,NSTRI,Bonab,Iran
Bibliografia
- 1. Emin S., Singh S.P., Han L., Satoh N., Islam A., Sol. Energy, 85 (2011), 1264.
- 2. Zhang J.Z., Optical Properties and Spectroscopy of Nanomaterials, World Scientific Publishing, London, 2009, p.136.
- 3. Gunes S., Fritz K.P., Neugebauer H., Sari-ciftci N.S., Kumar S., Scholes G.D., Sol. Energ. Mat. Sol. C., 91 (2007), 420.
- 4. Dhanam M., Kavitha B., Maheswari B., Jesna G.R., Acta Phys. Pol. A, 119 (2011), 885.
- 5. Nair P.K., Nair M.T.S., Garcia V.M., Arenas O.L., Peña Y., Castillo A., Ayala I.T., Gomezdaza O., Sánchez A., Campos J., Hu H., Suárez R., Rincón M.E., Sol. Energ. Mat. Sol. C., 52 (3-4) (1998), 313.
- 6. Tohidi T., Jamshidi-Ghaleh K., Namdar A., Abdi-Ghaleh R., Mat. Sci. Semicon. Proc., 25 (2014), 197.
- 7. Pawar S.M., Pawar B.S., Kim J.H., Joo O.-S., Lokhande C.D., Curr. Appl. Phys., 11 (2011), 117.
- 8. Hodes G., Phys. Chem. Chem. Phys., 9 (2007), 2181.
- 9. Dobson K.D., Visoly-Fisher I., Hodes G., Cahen D., Sol. Energ. Mat. Sol. C., 62 (2000), 295.
- 10. Scheer R., Schock H.W., Chalcogenide Photo-voltaics: Physics, Technologies and Thin Film Devices, John Wiley & Sons, 2011.
- 11. Nair P.K., Barrios-Salgado E., Capistrán J., Ramón M.L., Nair M.T.S., Zíngaro R.A., J. Electrochem. Sci. Te., 157 (2010), D528.
- 12. Bhandari K.P., Roland P.J., Mahabaduge H., Haugen N.O., Grice C.R., Jeong S., Dykstra T., Gao J., Ellingson R.J., Sol. Energ. Mat. Sol. C., 117 (2013), 476.
- 13. Hernandez-Borja J., Vorobievn Y.V., Ramirez-Bon R., Sol. Energ. Mat. Sol. C., 95 (2011), 1882.
- 14. Obaid A.S., Hassan Z., Mahdi M.A., Bououd-INA M., Sol. Energy, 89 (2013), 143.
- 15. Tohidi T., Jamshidi-Ghaleh K., Appl. Phys. A, 118 (2015), 1247.
- 16. Jung S., Ahn S., Yun J.H., Gwak J., Kimb D., Yoon K., Curr. Appl. Phys., 10 (2010), 990.
- 17. Lee M.-K., Wang J.-C., Horng S.-F., Meng H.-F., Sol. Energ. Mat. Sol. C., 94 (2010), 578.
- 18. Barote M.A., Yadav A.A., Chavanan T.V., Ma-SUMDAR E.U., Dig. J. Nanomater., Bios. 6 (2011), 979.
- 19. Wang Z.S.Q., Zeng X., Zhang C., Shi M., Tan F., Wang Z., Liub J., Houc Y., Tengc F., Fengc Z., Polymer, 49 (2008), 4647.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-d074554b-c4db-4276-b675-4a3410fcd29d