High-efficiency perovskite photovoltaic system performance by molecular dynamics method: Optimizing electron transport thicknesses, hole transport, and anti-reflector layers of the sustainable energy materials
The perovskite solar cell was modeled with the assistance of the molecular dynamics (MD) method to propose a superior configuration for perovskite solar cells and high efficiency for longtime use under severe or unsafe operating conditions. To achieve this aim, several materials and alignments were...
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Published in | Engineering analysis with boundary elements Vol. 150; pp. 120 - 126 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
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Elsevier Ltd
01.05.2023
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Abstract | The perovskite solar cell was modeled with the assistance of the molecular dynamics (MD) method to propose a superior configuration for perovskite solar cells and high efficiency for longtime use under severe or unsafe operating conditions. To achieve this aim, several materials and alignments were examined. The whole thickness of this device was kept small enough (≦1 µm). Inorganic materials were used as selective compartments. Perovskite solar cells may have the performance of their photovoltaics improved by optimizing certain parameters. When selecting the materials, several criteria were taken into consideration, including thicknesses, cost, stability, efficiency, and compatibility with wearable Photovoltaic (PV). To model this construction, the electro-physical characteristics of the components were considered, and the findings were compared to those obtained by other studies. |
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AbstractList | The perovskite solar cell was modeled with the assistance of the molecular dynamics (MD) method to propose a superior configuration for perovskite solar cells and high efficiency for longtime use under severe or unsafe operating conditions. To achieve this aim, several materials and alignments were examined. The whole thickness of this device was kept small enough (≦1 µm). Inorganic materials were used as selective compartments. Perovskite solar cells may have the performance of their photovoltaics improved by optimizing certain parameters. When selecting the materials, several criteria were taken into consideration, including thicknesses, cost, stability, efficiency, and compatibility with wearable Photovoltaic (PV). To model this construction, the electro-physical characteristics of the components were considered, and the findings were compared to those obtained by other studies. |
Author | Tlili, Iskander Musmar, Sa'ed A. Rebey, Amor Henda, Mouna Ben Alkanhal, Tawfeeq Abdullah |
Author_xml | – sequence: 1 givenname: Mouna Ben surname: Henda fullname: Henda, Mouna Ben organization: Department of physics, College of Science, Al-Zulfi, Majmaah University, Al-Majmaah 11952, Saudi Arabia – sequence: 2 givenname: Tawfeeq Abdullah surname: Alkanhal fullname: Alkanhal, Tawfeeq Abdullah organization: Department of Mechatronics and System Engineering, College of Engineering, Majmaah University, Al-Majmaah 11952, Saudi Arabia – sequence: 3 givenname: Amor surname: Rebey fullname: Rebey, Amor organization: Department of Business Administration, College of Business Administration, Majmaah University, Al-Majmaah 11952, Saudi Arabia – sequence: 4 givenname: Sa'ed A. surname: Musmar fullname: Musmar, Sa'ed A. organization: Department of Industrial Engineering, The University of Jordan, Amman 11942, Jordan – sequence: 5 givenname: Iskander surname: Tlili fullname: Tlili, Iskander email: l.tlili@mu.edu.sa organization: Department of physics, College of Science, Al-Zulfi, Majmaah University, Al-Majmaah 11952, Saudi Arabia |
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SubjectTerms | Inorganic materials Perovskite solar cell Photovoltaics Sustainable energy |
Title | High-efficiency perovskite photovoltaic system performance by molecular dynamics method: Optimizing electron transport thicknesses, hole transport, and anti-reflector layers of the sustainable energy materials |
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