DSSC QUYOSH ELEMENTLARI VA ULARNING TAYYORLASH USULI

Authors

  • A.A. Abdukarimov Author
  • A.U.Soatillayev Author
  • S.A. Hoshimov Author

Keywords:

Kalit so‘zlar. Yuqori sezgir bo‘yoqli quyosh elementlari (DSSC- Dye sensitized solar cell), fotoelektrod, konturelektrod, fotoanod, elektrolit, gel polimer elektrolit (GPE), yorug‘likka yuqori sezgir bo‘yoq.

Abstract

 Anotatsiya. Organik quyosh elementlarining yangi turlarini tayyorlash texnologiyalari o‘rganilgan. Yangi avlod quyosh elementlarining elektrofizik va optik parametrlarini o‘lchash usullari tadqiq etilgan. Organik quyosh elementlarining fotogalvanik xarakteristikalari – fotovolt-amper xarakteristikasining to‘ldirish koeffisiyenti (ff), kuchlanish (Umax), tok zichligi (Imax), quvvatning  (Pmax) effektiv qiymatlari va quyosh elementlarining foydali ish koeffisiyentlari (h) aniqlash usullari tadqiq etilgan;

References

1. E. Genger, R. Agrawal, “A commentary on the US policies for efficient large scale renewable energy storage systems: Focus on carbon storage cycles,” Energy Policy, 2016. V. 88. P. 477–484.

2. M. Arshad, S. Ahmed, “Cogeneration through bagasse: A renewable strategy to meet the future energy needs,” Renewable and Sustainable Energy Reviews, 2016.V.54. P.732-737.

3. M. A. Green, K. Emery, Y. Hishikawa, W. Warta, and E. D. Dunlop, “Solar cell efficiency tables (version 46),” Progress in Photovoltaics: Research and Applications, 2015. V. 23, no. 7.P. 805–812.

4. S. Urnikaite., M. Daskeviciene., R. Send., H. Wonneberger., A. Sackus., I. Bruder., V. Getautis “Organic dyes containing a hydrazone moiety as auxiliary donor for solid-state DSSC applications,” Dye. Pigment, 2015. V.114. P.175-183.

5. J. W. Lee, N. G. Park, H. S. Ko, “15.76% efficiency perovskite solar cells prepared under high relative humidity: Importance of PbI2 morphology in two-step deposition of CH3NH3PbI3,”J. Mater. Chem. A, 2015. V. 3. no. 16. P. 8808–8815.

6. A. B. Kashyot, J. E. Nady, S. Ebrahim, M. B. Saliman, M. Fathy, “Electrospun polymethylacrylate nanofibers membranes for quasi-solid-state dye sensitized solar cells,” Alexandria Eng. J., 2016. V.55. no. 2. P.1737–1743.

7. Y. Duan. Q. Tang., Y. Chen., Z. Zhao., Yang L., M. Hou., P. Yang., B. He and L. Yu, “Solid-state dye-sensitized solar cells from poly(ethylene oxide)/polyaniline electrolytes with catalytic and hole-transporting characteristics,” J. Mater. Chem. A,2015. V.3. no. 10. P. 5368–5374.

8. M. Murayama, T. Mori, “Equivalent circuit analysis of dye-sensitized solar cell by using one-diode model: Effect of carboxylic acid treatment of TiO2 electrode,” Japanese J. Appl. Physics, Part 1 Regul. Pap. Short Notes Rev. Pap., 2006. V. 45, no. 1 B. P.542-545.

9. H. S. Kim, N. G. Park, “Parameters affecting I-V hysteresis of CH3NH3PbI3 perovskite solar cells: Effects of perovskite crystal size and mesoporous TiO2 layer,” J. Phys. Chem. Lett., 2014. V. 5. no. 17.P. 2927–2934.

10. M. Diantoro, T. Suprayogi, A. Hidayat, A. Taufiq, A. Fuad, R. Suryana, “Shockley’s equation fit analyses for solar cell parameters from I-V curves,” Int. J. Photoenergy, 2018.V. 2018. P.1-8. doi: 10.1155/2018/9214820..

Published

2025-10-28

How to Cite

A.A. Abdukarimov, A.U.Soatillayev, & S.A. Hoshimov. (2025). DSSC QUYOSH ELEMENTLARI VA ULARNING TAYYORLASH USULI. JOURNAL OF NEW CENTURY INNOVATIONS, 87(1), 334-341. https://journalss.org/index.php/new/article/view/3870