연구 분야: Databases
학회: 2024 3rd International Conference for Advancement in Technology (ICONAT)
This work investigates the performance optimization of Ag-PSCs with an looking towards the combined impacts of operating temperature and ETL’s thickness on PCE. It also study how small temperature increases might improve charge carrier mobility using modern modelling tools including SCAPS-1D, so changing Voc and Jsc. On the flip side, overly high temperatures lower PCE by increasing rates of material degradation and recombination. It simultaneously explore the influence of ETL thickness, where a minimum PCBM thickness assures effective electron extraction and minimum recombination, thereby keeping high Voc, Jsc, and FF. Variations in this ideal thickness increase resistive losses and recombination, therefore reducing the general efficiency. The results highlight the requirement of different operating temperature and ETL thickness to reach best performance, and it is optimized in ideal parameters which give result: Voc:1.53V, JSC:- 25.87 \mathrm{~mA} / \mathrm{cm}^{2} , FF:- 78.18% and PCE:- 29.8%. Especially under climate action and affordable and clean energy, this work supports the enabling of the creation of more robust, environmentally friendly PSCs. Improved material development comprising lead-free perovskites with higher thermal stability and light absorption capabilities and inventive temperature control methods should take front stage in future research. Manufacturing might be scaled and the dependability of perovskite solar cells in practical applications guaranteed by means of current simulation tools, enhancement of layer and interface properties, and long-term stability testing under realworld environments. By tackling these issues, more research can greatly advance the sector and make perovskite solar cells a more practical and sustainable choice for generation of renewable energy, so promoting a more sustainable and strong energy infrastructure.
| 발행 연도 | 2024년 |
|---|---|
| 인용수 | 24 |
| 출판 국가 | Andorra |
| 사이트 | IEEE |
| 좋아요 수 | 0 |