Different behaviors in current-voltage measurements of undoped and doped Sb2S3-based solar cells
Само за регистроване кориснике
2017
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The focus of this paper was on the different behaviors in current-voltage measurements of fabricated solar cells due to variations in scan rates (the slowest 10 mV s(-1), medium 50 mV s(-1), and the fastest 100 mV s(-1)). Three different undoped and doped antimony sulfide (Sb2S3)-based hybrids solar cells were examined under standard test conditions (1 sun) as follows: indium tin oxide glass/amorphous Sb2S3-polyaniline/TiO2/polyaniline/electrolyte/aluminum; indium tin oxide glass/p-doped Sb2S3-polyaniline/amorphous Sb2S3-polyaniline/n-doped Sb2S3-polyaniline/polyaniline/electrolyte/aluminum; and indium tin oxide glass/p-doped Sb2S3-polyaniline/aSb(2)S(3)-polyaniline/n-doped Sb2S3-polyaniline/TiO2/polyaniline/electrolyte/aluminum. Different current-voltage curves changing from inverse exponential, linear to exponential ones with different rates of measurement scans at 1 sun were recorded. The obtained results also show basic cell characteristics such as fill factor, short-circuit curren...t, efficiency, series, and shunt resistances. The highest efficiencies of all three cells were obtained at the slowest scan rate, while values of the shunt and series resistances are in agreement with the shape of the curves. On the other hand, one example of measurement at lower light intensity (55% of sun) was given, indicating more stable cell performances and the exponential shape of current-voltage curves at all scan rates.
Кључне речи:
Solar energy material / Solar cell / Semiconductor / Sb2S3Извор:
Journal of Applied Electrochemistry, 2017, 47, 1, 117-124Издавач:
- Springer, Dordrecht
Финансирање / пројекти:
DOI: 10.1007/s10800-016-1025-2
ISSN: 0021-891X
WoS: 000392077600011
Scopus: 2-s2.0-84997080386
Институција/група
Institut za multidisciplinarna istraživanjaTY - JOUR AU - Lojpur, Vesna AU - Tasić, Nikola AU - Validzic, Ivana PY - 2017 UR - http://rimsi.imsi.bg.ac.rs/handle/123456789/1030 AB - The focus of this paper was on the different behaviors in current-voltage measurements of fabricated solar cells due to variations in scan rates (the slowest 10 mV s(-1), medium 50 mV s(-1), and the fastest 100 mV s(-1)). Three different undoped and doped antimony sulfide (Sb2S3)-based hybrids solar cells were examined under standard test conditions (1 sun) as follows: indium tin oxide glass/amorphous Sb2S3-polyaniline/TiO2/polyaniline/electrolyte/aluminum; indium tin oxide glass/p-doped Sb2S3-polyaniline/amorphous Sb2S3-polyaniline/n-doped Sb2S3-polyaniline/polyaniline/electrolyte/aluminum; and indium tin oxide glass/p-doped Sb2S3-polyaniline/aSb(2)S(3)-polyaniline/n-doped Sb2S3-polyaniline/TiO2/polyaniline/electrolyte/aluminum. Different current-voltage curves changing from inverse exponential, linear to exponential ones with different rates of measurement scans at 1 sun were recorded. The obtained results also show basic cell characteristics such as fill factor, short-circuit current, efficiency, series, and shunt resistances. The highest efficiencies of all three cells were obtained at the slowest scan rate, while values of the shunt and series resistances are in agreement with the shape of the curves. On the other hand, one example of measurement at lower light intensity (55% of sun) was given, indicating more stable cell performances and the exponential shape of current-voltage curves at all scan rates. PB - Springer, Dordrecht T2 - Journal of Applied Electrochemistry T1 - Different behaviors in current-voltage measurements of undoped and doped Sb2S3-based solar cells EP - 124 IS - 1 SP - 117 VL - 47 DO - 10.1007/s10800-016-1025-2 ER -
@article{ author = "Lojpur, Vesna and Tasić, Nikola and Validzic, Ivana", year = "2017", abstract = "The focus of this paper was on the different behaviors in current-voltage measurements of fabricated solar cells due to variations in scan rates (the slowest 10 mV s(-1), medium 50 mV s(-1), and the fastest 100 mV s(-1)). Three different undoped and doped antimony sulfide (Sb2S3)-based hybrids solar cells were examined under standard test conditions (1 sun) as follows: indium tin oxide glass/amorphous Sb2S3-polyaniline/TiO2/polyaniline/electrolyte/aluminum; indium tin oxide glass/p-doped Sb2S3-polyaniline/amorphous Sb2S3-polyaniline/n-doped Sb2S3-polyaniline/polyaniline/electrolyte/aluminum; and indium tin oxide glass/p-doped Sb2S3-polyaniline/aSb(2)S(3)-polyaniline/n-doped Sb2S3-polyaniline/TiO2/polyaniline/electrolyte/aluminum. Different current-voltage curves changing from inverse exponential, linear to exponential ones with different rates of measurement scans at 1 sun were recorded. The obtained results also show basic cell characteristics such as fill factor, short-circuit current, efficiency, series, and shunt resistances. The highest efficiencies of all three cells were obtained at the slowest scan rate, while values of the shunt and series resistances are in agreement with the shape of the curves. On the other hand, one example of measurement at lower light intensity (55% of sun) was given, indicating more stable cell performances and the exponential shape of current-voltage curves at all scan rates.", publisher = "Springer, Dordrecht", journal = "Journal of Applied Electrochemistry", title = "Different behaviors in current-voltage measurements of undoped and doped Sb2S3-based solar cells", pages = "124-117", number = "1", volume = "47", doi = "10.1007/s10800-016-1025-2" }
Lojpur, V., Tasić, N.,& Validzic, I.. (2017). Different behaviors in current-voltage measurements of undoped and doped Sb2S3-based solar cells. in Journal of Applied Electrochemistry Springer, Dordrecht., 47(1), 117-124. https://doi.org/10.1007/s10800-016-1025-2
Lojpur V, Tasić N, Validzic I. Different behaviors in current-voltage measurements of undoped and doped Sb2S3-based solar cells. in Journal of Applied Electrochemistry. 2017;47(1):117-124. doi:10.1007/s10800-016-1025-2 .
Lojpur, Vesna, Tasić, Nikola, Validzic, Ivana, "Different behaviors in current-voltage measurements of undoped and doped Sb2S3-based solar cells" in Journal of Applied Electrochemistry, 47, no. 1 (2017):117-124, https://doi.org/10.1007/s10800-016-1025-2 . .