Modelling, optimization, and numerical simulation for efficiency enhancement of lead-free CsAgBiI perovskite solar cells using a double electron transport layer

J.S. Shaikh, N.S. Shaikh, S.S. Mali, J.V. Patil, K.K. Pawar, P. Kanjanaboos, C.K. Hong, J.H. Kim, P.S. Patil, Nanoarchitectures in dye-sensitized solar cells: metal oxides, oxide perovskites and carbon-based materials. Nanoscale. 10(11), 4987–5034 (2018)

Article  Google Scholar 

B.G. Akinoglu, B. Tuncel, V. Badescu, Beyond 3rd generation solar cells and the full spectrum project. Recent advances and new emerging solar cells. Sustain. Energy Technol. Assess., 46, p. 101287 (2021)

Google Scholar 

M.I.H. Ansari, A. Qurashi, M.K. Nazeeruddin, Frontiers, opportunities, and challenges in perovskite solar cells: A critical review. J. Photochem. Photobiol. C 35, 1–24 (2018)

Article  Google Scholar 

L.C. Andreani, A. Bozzola, P. Kowalczewski, M. Liscidini, L. Redorici, Silicon solar cells: toward the efficiency limits. Adv. Physics: X 4(1), 1548305 (2019)

ADS  Google Scholar 

N. Shrivastav, A. Kumar, Influence of calcination temperature on SnO2 bandgap and its impact on double absorber perovskite solar cell efficiency. J. Electron. Mater. 55(6), 5219–5229 (2026)

Article  Google Scholar 

S. Bhattarai, A. Mhamdi, I. Hossain, Y. Raoui, R. Pandey, J. Madan, A. Bouazizi, M. Maiti, D. Gogoi, A.J.M. Sharma, Nanostructures, A detailed review of perovskite solar cells: Introduction, working principle, modelling, fabrication techniques, future challenges. Nanostructures 25, 207450 (2022)

Article  Google Scholar 

M.M. Elsabahy, M. Emam, H. Sekiguchi, M.J.A.E. Ahmed, Performance mapping of silicon-based solar cell for efficient power generation and thermal utilization: Effect of cell encapsulation, temperature coefficient, and reference efficiency, 356, p. 122385 (2024)

W. Li, Z. Xu, Y. Yan, J. Zhou, Q. Huang, S. Xu, X. Zhang, Y. Zhao, G.J.A.E.M. Hou, Passivating contacts for crystalline silicon solar cells: An overview of the current advances and future perspectives, 14, 18, p. 2304338 (2024)

F. Huang, M. Li, P. Siffalovic, G. Cao, J. Tian, From scalable solution fabrication of perovskite films towards commercialization of solar cells. Energy Environ. Sci. 12(2), 518–549 (2019)

Article  Google Scholar 

M.K. Hossain, G.F.I. Toki, D.P. Samajdar, M. Mushtaq, M.H.K. Rubel, R. Pandey, J. Madan, M.K.A. Mohammed, M.R. Islam, M.F. Rahman, H. Bencherif, Deep insights into the coupled optoelectronic and photovoltaic analysis of lead-free CsSnI3 perovskite-based solar cell using DFT calculations and SCAPS-1D simulations. ACS Omega 8(25), 22466–22485 (2023)

Article  Google Scholar 

C. Eames, J.M. Frost, P.R.F. Barnes, B.C. O’Regan, A. Walsh, M.S. Islam, Ionic transport in hybrid lead iodide perovskite solar cells. Nat. Commun. 6(1), 7497 (2015)

Article  ADS  Google Scholar 

I.C. Smith, E.T. Hoke, D. Solis-Ibarra, M.D. McGehee, H.I. Karunadasa, A layered hybrid perovskite solar-cell absorber with enhanced moisture stability. Angew. Chem. Int. Ed. 53(42), 11232–11235 (2014)

Article  Google Scholar 

S. Bhattarai, T.D. Das, Optimization of the perovskite solar cell design to achieve a highly improved efficiency. Opt. Mater. 111, 110661 (2021)

Article  Google Scholar 

Y. Reyna, M. Salado, S. Kazim, A. Pérez-Tomas, S. Ahmad, M. Lira-Cantu, Performance and stability of mixed FAPbI3(0.85)MAPbBr3(0.15) halide perovskite solar cells under outdoor conditions and the effect of low light irradiation. Nano Energy 30, 570–579 (2016)

Article  Google Scholar 

S. Bhattarai, A. Sharma, T.D. Das, Efficiency enhancement of perovskite solar cell by using doubly carrier transport layers with a distinct bandgap of MAPbI3 active layer. Optik 224, 165430 (2020)

Article  Google Scholar 

S. Bhattarai, I. Hossain, M. Maiti, R. Pandey, J. Madan, Performance analysis and optimization of all-inorganic CsPbI3-based perovskite solar cell. Indian J. Phys. 97(9), 2629–2637 (2023)

Article  ADS  Google Scholar 

S. Bhattarai, M.K. Hossain, G.F.I. Toki, R. Pandey, J. Madan, D.P. Samajdar, S. Ezzine, L.B. Farhat, M.Z. Ansari, S.H. Ahammad, A.N.Z. Rashed, Efficiency enhancement of perovskite solar cell devices utilizing MXene and TiO2 as an electron transport layer. New J. Chem. 47(38), 17908–17922 (2023)

Article  Google Scholar 

M.K. Hossain, G.F.I. Toki, J. Madan, R. Pandey, H. Bencherif, M.K.A. Mohammed, M.R. Islam, M.H.K. Rubel, M.F. Rahman, S. Bhattarai, D.P. Samajdar, A comprehensive study of the optimization and comparison of cesium halide perovskite solar cells using ZnO and Cu2FeSnS4 as charge transport layers. New J. Chem. 47(18), 8602–8624 (2023)

Article  Google Scholar 

M.S. Rahman, S. Miah, M.S.W. Marma, M. Ibrahim, Numerical Simulation of CsSnI 3 -based Perovskite Solar Cells: Influence of doped-ITO Front Contact (2020)

B.K. Ravidas, M.K. Roy, D.P. Samajdar, Investigation of photovoltaic performance of lead-free CsSnI3-based perovskite solar cell with different hole transport layers: First principle calculations and SCAPS-1D analysis. Sol. Energy 249, 163–173 (2023)

Article  ADS  Google Scholar 

M.K. Hossain, D. Samajdar, R.C. Das, A.A. Arnab, M. Rahman, M. Rubel, M.R. Islam, H. Bencherif, R. Pandey, J. Madan, M.K.A. Mohammed, Design and Simulation of Cs2BiAgI6 Double Perovskite Solar Cells with Different Electron Transport Layers for Efficiency Enhancement. Energy Fuels 37, 3957–3979 (2023)

Article  Google Scholar 

M. Alla, V. Manjunath, E. Choudhary, M. Samtham, S. Sharma, P. Shaikh, M. Rouchdi, B. Fares, Evaluating the potential of lead-free nontoxic Cs2BiAgI6-based double perovskite solar cell. physica status solidi (a) (2022). https://doi.org/10.1002/pssa.202200642

Article  Google Scholar 

A. Tara, V. Bharti, S. Sharma, R. Gupta, Device simulation of FASnI3 based perovskite solar cell with Zn(O0.3, S0.7) as electron transport layer using SCAPS-1D. Opt. Mater. 119, 111362 (2021)

Article  Google Scholar 

H.H. Park, Efficient and stable perovskite solar cells based on inorganic hole transport materials, 12, 1, p. 112 (2022)

F. Yang, P. Zhang, M.A. Kamarudin, G. Kapil, T. Ma, S. Hayase, Addition Effect of Pyreneammonium Iodide to Methylammonium Lead Halide Perovskite-2D/3D Heterostructured Perovskite with Enhanced Stability. Adv. Funct. Mater. 28, 1114 (2018)

Article  Google Scholar 

T. Tang, Y. Tang, First principle comparative study of transitional elements Co, Rh, Ir(III)-based double halide perovskites. Mater. Today Commun. 34, 105431 (2023)

Article  Google Scholar 

S. Bhattarai, M.K. Hossain, J. Madan, R. Pandey, D.P. Samajdar, P.K. Kalita, A.N.Z. Rashed, M.Z. Ansari, M. Amami, Performance improvement of CZTS-based hybrid solar cell with double hole transport layer using extensive simulation. J. Phys. Chem. Solids 183, 111641 (2023)

Article  Google Scholar 

D. Kumar, N.K. Bansal, H. Dixit, A. Kulkarni, T.J.A.T. Singh, Simulations, Numerical study on the effect of dual electron transport layer in improving the performance of perovskite–perovskite tandem solar cells, 6, 3, p. 2200800 (2023)

H. Tan, F. Che, M. Wei, Y. Zhao, M.I. Saidaminov, P. Todorović, D. Broberg, G. Walters, F. Tan, T. Zhuang, B. Sun, Z. Liang, H. Yuan, E. Fron, J. Kim, Z. Yang, O. Voznyy, M. Asta, E.H. Sargent, Dipolar cations confer defect tolerance in wide-bandgap metal halide perovskites. Nat. Commun. 9(1), 3100 (2018)

Article  ADS  Google Scholar 

A.D. Rana, I.D. Pharne, K. Bhargava, Numerical simulation of highly efficient double perovskite solar cell using SCAPS-1D. Mater. Today: Proc. 73, 584–589 (2023)

Google Scholar 

S. Bhattarai, R. Pandey, J. Madan, A. Mhamdi, A. Bouazizi, D. Muchahary, D. Gogoi, A. Sharma, T.D. Das, Investigation of Carrier Transport Materials for Performance Assessment of Lead-Free Perovskite Solar Cells. IEEE Trans. Electron. Devices. 69(6), 3217–3224 (2022)

Article  ADS  Google Scholar 

A.S. Najm, P. Chelvanathan, S.K. Tiong, M.T. Ferdaous, S.A. Shahahmadi, Y. Yusoff, K. Sopian, N. Amin, Numerical insights into the influence of electrical properties of n-CdS buffer layer on the performance of SLG/Mo/p-absorber/n-CdS/n-ZnO/Ag configured thin film photovoltaic devices. Coatings (2021). https://doi.org/10.3390/coatings11010052

Article  Google Scholar 

N. Liu, M. Chen, H. Yang, M. Ran, C. Zhang, X. Luo, H. Lu, Y. Yang, TiO2/Mg-SnO2 nanoparticle composite compact layer for enhancing the performance of perovskite solar cells. Opt. Mater. Express 10(1), 157–169 (2020)

Article  ADS  Google Scholar 

D. Liu, L. Liu, L. Yao, X. Peng, Y. Li, T. Jiang, Synthesis of ZnO nanoparticles using radish root extract for effective wound dressing agents for diabetic foot ulcers in nursing care. Technology 55, 101364 (2020)

Google Scholar 

M.D.K. Burgelman, K. Decock, A. Niemegeers, J. Verschraegen, S. Degrave, SCAPS manual, Version: 23 January 2018, vol. 181 (2018)

M.K. Otoufi, M. Ranjbar, A. Kermanpur, N. Taghavinia, M. Minbashi, M. Forouzandeh, F. Ebadi, Enhanced performance of planar perovskite solar cells using TiO2/SnO2 and TiO2/WO3 bilayer structures: Roles of the interfacial layers. Sol. Energy. 208, 697–707 (2020)

Article  ADS  Google Scholar 

A. Verma, N. Shrivastav, J. Madan, Exploring the Influence of DJ-2D/3D Absorber Layer Thickness on TiO2-Based Perovskite Solar Cell Performance (2024)

Z. Zhang, Q. Sun, Y. Lu, F. Lu, X. Mu, S.-H. Wei, M. Sui, Hydrogenated Cs2AgBiBr6 for significantly improved efficiency of lead-free inorganic double perovskite solar cell. Nat. Commun. 13(1), 3397 (2022)

Article  ADS  Google Scholar 

S. Bouazizi, W. Tlili, A. Bouich, B.M. Soucase, A. Omri, Design and efficiency enhancement of FTO/PC60BM/CsSn0. 5Ge0. 5I3/Spiro-OMeTAD/Au perovskite solar cell utilizing SCAPS-1D Simulator. Mater. Res. Express. 9(9), 096402 (2022)

Article  ADS  Google Scholar 

P. Roy, N.K. Sinha, S. Tiwari, A. Khare, Influence of defect density and layer thickness of absorption layer on the performance of tin based perovskite solar cell, IOP Conference Series: Materials Science and Engineering, vol. 798, no. 1, p. 012020, 2020

Article  Google Scholar 

S. Bhattarai, A. Sharma, D. Muchahary, D. Gogoi, T.J.O.M. Das, Numerical simulation study for efficiency enhancement of doubly graded perovskite solar cell, 118, p. 111285, 2021

S. Singh, C. Li, F. Panzer, K.L. Narasimhan, A. Graeser, T.P. Gujar, A. Köhler, M. Thelakkat, S. Huettner, D. Kabra, Effect of thermal and structural disorder on the electronic structure of hybrid perovskite semiconductor CH3NH3PbI3. J. Phys. Chem. Lett. 7, 3014–3021 (2016)

Article  Google Scholar 

H.-J. Du, W.-C. Wang, J.-Z.J.C.P.B. Zhu, Device simulation of lead-free CH3NH3SnI3 perovskite solar cells with high efficiency, 25, 10, p. 108802 (2016)

B. Bachiri, K. Rahmoun, F.A. Bahar, Enhancing photovoltaic performance through interfacial Engineering: A comparative analysis of bismuth iodide (BiI3) and Cs2BiAgI6 as interlayer materials in the design of perovskite solar cells. Sol. Energy. 278, 112765 (2024)

Article  Google Scholar 

L. Sana, E.K. Youssef, A. Houssam, Efficiency optimization of double perovskite solar cells using Bi₂FeCrO₆ and Cs₂BiAgI₆ without charge transport layers: a SCAPS-1D simulation study. Multiscale Multidisciplinary Model. Experiments Des. 9(1), 87 (2026)

Article  Google Scholar 

G.M. Mustafa, M.S. Akhtar, U. Sabir, N.K. Almaymoni, W.A. El-Fattah, W. Mnif, M. Iqbal, Mechanistic insights into performance limitation and optimization of lead-free double perovskite Cs2BiAgI6 solar cells. J. Solgel Sci. Technol. 117(2), 45 (2026)

Article  Google Scholar 

Comments (0)

No login
gif