Porphyrin and Phthalocyanines-Based Solar Cells: Fundamental Mechanisms and Recent Advances

سال انتشار: 1398
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 499

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شناسه ملی سند علمی:

JR_AJCS-2-1_003

تاریخ نمایه سازی: 19 تیر 1398

چکیده مقاله:

A remarkable source of renewable energy is the Dye-­sensitized solar cells (DSCs). However, the major limitation of power conversion efficiency (PCE) of devices is their inability to produce electricity using photons from the near­infrared (NIR) spectral region. Some Metal-free organic sensitizers make use of strong electron donating or withdrawing moieties to tune the optical band gap to allow the absorption of lower energy wavelengths in charge transfer systems while porphyrins and phthalocyanines compounds are used to shift the Soret and Q bands toward lower energy absorption. Various molecules are been synthesized to improve and increase the power conversion efficiency of the compounds. This study discusses the structure of these compounds, working principles and their derivatives as recent advances been carried out to improve the power efficiencies of the compounds.

نویسندگان

Oyebanji Opeyemi

Department of Chemistry, University of Ilorin, Ilorin, Nigeria

Hitler Louis

CAS Key Laboratory for Nanosystem and Hierarchical Fabrication, CAS Centre for Excellence in Nanoscience, National Centre for Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing, China. Department of Pure and Applied

Chinanso Oparab

CAS Key Laboratory for Nanosystem and Hierarchical Fabrication, CAS Centre for Excellence in Nanoscience, National Centre for Nanoscience and Technology, University of Chinese Academy of Sciences, Beijing, China.

Oyebanji Funmilayo

Department of Chemistry, Faculty of Physical Sciences, University of Ibadan, Ibadan, Nigeria.

مراجع و منابع این مقاله:

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  • . http://www.chemistryexplained.com/Ru-Sp/Solar-Cells.html ...
  • . L. Eldada, Thin film CIGS photovoltaic modules: monolithic integration and ...
  • .T. Tanti, World economic forum annual meeting, 2018. https://www.weforum.org/agenda/2018/01/clean-energy-renewable-growth-sustainable-key-trends/ ...
  • . M.B. Askari, M. Mirzaei, V. Abadi and M. Mirhabibi, ...
  • . I. Norris, Synthesis and Characterisation of Chiral Conducting Polymers, ...
  • . P.N. Ciesielskia, F.M. Hijazib, A.M. Scott, C.J. Faulkner, L.Beard, ...
  • . O. Yehezkeli,, R. Tel-Vered, J. Wasserman, A. Trifonov, D. ...
  • . Wohlgemuth J.H., Narayanan S. Twenty Second IEEE Photovoltaic Specialists ...
  • . Publications, Presentations, and News Database: Cadmium Telluride . National ...
  • . K. Zweibel, J. Mason, V. Fthenakis, A Solar Grand ...
  • . Further mention of cost competitiveness: Scientific American, April 2008. ...
  • . J. Peng, L. Lu, H. Yang, Renewable and Sustainable ...
  • . V. Fthenakis, H.C. Kim, Renewable and Sustainable Energy Reviews, ...
  • . M.J.  de Wild-Scholten, Solar Energy Mater. Solar Cells, 2013, ...
  • . Fthenakis, Vasilis M. (2004). Archived from the original on ...
  • . Werner, Jürgen H. (2 November 2011). Archived from the ...
  • . Water Solubility of Cadmium Telluride in a Glass-to-Glass Sealed ...
  • . H. Trabish, The Lowdown on the Safety of First ...
  • . R. Mullins, Cadmium: The Dark Side of Thin-Film, September ...
  • . Supply Constraints Analysis, National Renewable Energy Laboratory ...
  • . Fraunhofer ISE Photovoltaics Report, July 28, 2014, 18-19. ...
  • . http://www.solar-facts-and-advice.com/amorphoussilicon.html ...
  • . http://www.iea.org (2014. Retrieved 7 October 2014. ...
  • . Fraunhofer ISE and NREL (January 2015). Retrieved 25 April ...
  • . DOE Solar Energy Technologies Program Peer Review (PDF). U.S. ...
  • . Wan, Haiying Dye Sensitized Solar Cells , University of ...
  • . Dye-Sensitized vs. Thin Film Solar Cells, European Institute for ...
  • . H. Tributsch, Coordinat. Chem. Rev., 2004, 248, 1511. ...
  • . S.J. Moss, A. Ledwith, The Chemistry of the Semiconductor ...
  • . D.J. Milliron, I. Gur, A.P. Alivisatos, Hybrid Organic–Nanocrystal Solar ...
  • . S.E. Shaheen, D.S. Ginley, G.E. Jabbour, Organic–Based Photovoltaics. MRS ...
  • . B.R. Saunders, M.L. Turner, Advances in Colloid and Interface ...
  • . N.S. Sariciftci, L. Smilowitz, A.J. Heeger, F. Wudl, Synthetic ...
  • . D.S. Ginger, N.C. Greenham, Physical Review B, 1999, 59,624–629. ...
  • . P.E. Shaw, A. Ruseckas, I.D.W. Samuel, Advanced Materials, 2008, ...
  • . M.G. Debije, P.P.C Verbunt, P.J. Nadkarni, S. Velate, K. ...
  • . M.G. Debije, P.P.C. Verbunt, B.C Rowan, B.S Richards, T.L ...
  • . R. Reisfeld, S. Neuman, Nature, 1978, 274, 144–145. ...
  • . R. Reisfeld, Y. Kalisky, Nature, 1980, 283, 281–282. ...
  • . A. Nwanya, F. Ezema, P. Ejikeme, International Journal of ...
  • . Ö. Birel, An overvıew on the some phenotıazıne derıvatıve ...
  • . M. Xie, J. Wang, J. Ren, L. Hao, F.Q. ...
  • . P.A. Angaridis, T. Lazarides, A.C. Coutsolelos, Polyhedron, 2014, 82, ...
  • . J. Gong, J. Liang, K. Sumathy, RenewSust Energ Rev, ...
  • . S. Shalini, R.B. Prabhu, S. Prasanna, T.K. Mallick, S. ...
  • . N. Zhang, B. Zhang, J. Yan, X. Xue, X. ...
  • . C. Grätzel, S.M. Zakeeruddin, Materials Today, 2013, 16, 11–18. ...
  • . Z. Zeng, B. Zhang, C. Li, X. Peng, X. ...
  • . D. Arteaga, R. Cotta, A. Ortiz, B. Insuasty, N. ...
  • . W.M. Campbell, A.K. Burrell, D.L. Officer, K.W. Jolley,  Coord. ...
  • . J. Lu, S. Liu, Y. Shen, J. Xu, Y. ...
  • . Sengupta D, Das P, Mondal B, Mukherjee K () ...
  • . F.T. Kong, S.Y. Dai, K.J. Wang Advances in Opto ...
  • . a) G. de la Torre, C.G. Claessens, T. Torres, ...
  • . a)M.V. Martínez-Díaz, T. Torres, Handbook of Porphyrin Science (Eds.: ...
  • . a) V. Velkannan, Curr. Sci. 2012, 102, 991–1000; b) ...
  • . a) M.K. Nazeeruddin, R. Humphry-Baker, M. Grätzel, D. Wöhrle, ...
  • . J.J. Cid, M. Garcia-Iglesias, J.H. Yum, A. Forneli, J. ...
  • . N. Nwahara, J. Britton, T. Nyokong. J. Coord. Chem., ...
  • . H. Karaca. J. Organomet. Chem., 2016, 822, 39. ...
  • . G. Martin, M.V. Martinez-Diaz, G. de la Torre, I. ...
  • . H. Karaca, B. Çayeğil, S. Sezer. Synth. Met., 2016, ...
  • . C.L. Wu, Y. Chen. Opt. Mater., 2017, 69, 38. ...
  • . J.F. Van Der Pol, E. Neeleman, J.W. Zwikker, R.J.M. ...
  • . H. Karaca, S. Sezer, Ş. Özalp–Yaman, C. Tanyeli. Polyhedron, ...
  • . A. Hagfeldt, G. Boschloo, L.C.L. Kloo, H. Pettersson. Chem. ...
  • . X. Zhang, Q. Chen, H. Sun, T. Pan, G. ...
  • . D. Daphnomili, G. Sharma, S. Biswas, K.J. Thomas, A. ...
  • . J. Mikroyannidis, G. Charalambidis, A. Coutsolelos, P. Balraju, G. ...
  • . V.K. Narra, H. Ullah, V.K. Singh, L. Giribabu, S. ...
  • . B. Chen, L. Sun, Y.S. Xie, Chin. Chem. Lett., ...
  • . C. Chitpakdee, S. Namuangruk, K. Suttisintong, S. Jungsuttiwong, T. ...
  • . W.  Zhou, B.  Zhao, P. Shen, S. Jiang, H. ...
  • . G. Sharma, G. Zervaki, P. Angaridis, A. Vatikioti, K. ...
  • . A. Shalabi, A. El Mahdy, H. Taha, K. Soliman, ...
  • . G.D. Sharma, P.A. Angaridis, S. Pipou, G.E. Zervaki, V. ...
  • . K. Sirithip, S. Morada, S, Namuangruk, T. Keawin, S. ...
  • . M.S.A. Alvarado, Novel porphyrin for DSSC and BHJ solar ...
  • . C.R. Zhang, L.H. Han, J.W. Zhe, N.Z. Jin, Y.L. ...
  • . M.P. Balanay, C.V.P. Dipaling, S.H. Lee, D.H. Kim, K.H. ...
  • نمایش کامل مراجع