Recent progress in performance improvement strategies for quantum dot sensitization methods: Challenges, achievements, and future prospects
In the recent past, there has been an increase in the use of semiconductor nanostructures that convert solar energy to electrical energy. This has encouraged the development of better and more efficient solar cells (SCs). Numerous investigations have been conducted into synthesizing novel semiconduc...
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American Institute of Physics Inc.
2023
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oai:scholars.utp.edu.my:373592023-10-04T08:42:41Z http://scholars.utp.edu.my/id/eprint/37359/ Recent progress in performance improvement strategies for quantum dot sensitization methods: Challenges, achievements, and future prospects Najm, A.S. Selvanathan, V. Aljuwaya, T.M. Sabri, L.S. Jamal, M.S. Abdullah Al-Zahrani, A. Holi, A.M. Jaber, I. Al Ghamdi, A. Amin, M.T. Sopian, K. Ismail, R.A. Moria, H. Bais, B. Majdi, H.S. Chowdhury, S. Sultan, A.J. Alhuzaymi, T.M. In the recent past, there has been an increase in the use of semiconductor nanostructures that convert solar energy to electrical energy. This has encouraged the development of better and more efficient solar cells (SCs). Numerous investigations have been conducted into synthesizing novel semiconductor materials and tuning the electronic properties based on the shape, size, composition, and assembly of the quantum dots to improve hybrid assemblies. Recent studies that are determining the prospects of quantum dot SCs can form the basis for improving photovoltaic efficiency. Here, we have reviewed studies that investigated the sensitization methods for fabricating highly efficient SCs. We also discussed some examples that would help other researchers who want to sensitize quantum dot (QD) SCs. Thereafter, we analyzed the main and popular strategies that can be used for sensitizing the QD SCs within the limitations, advantages, and prospects of fabricating high-efficiency and stable QDs. During this work, we offered strong technical support and a theoretical basis for improving the industrial applications of QD. In addition, we provide a reference that can inspire other researchers who aim to improve the performance of SCs. © 2023 Author(s). American Institute of Physics Inc. 2023 Article NonPeerReviewed Najm, A.S. and Selvanathan, V. and Aljuwaya, T.M. and Sabri, L.S. and Jamal, M.S. and Abdullah Al-Zahrani, A. and Holi, A.M. and Jaber, I. and Al Ghamdi, A. and Amin, M.T. and Sopian, K. and Ismail, R.A. and Moria, H. and Bais, B. and Majdi, H.S. and Chowdhury, S. and Sultan, A.J. and Alhuzaymi, T.M. (2023) Recent progress in performance improvement strategies for quantum dot sensitization methods: Challenges, achievements, and future prospects. APL Materials, 11 (9). ISSN 2166532X https://www.scopus.com/inward/record.uri?eid=2-s2.0-85171534055&doi=10.1063%2f5.0166032&partnerID=40&md5=512cc79ec1f61b4d9d9161034ad9583f 10.1063/5.0166032 10.1063/5.0166032 10.1063/5.0166032 |
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In the recent past, there has been an increase in the use of semiconductor nanostructures that convert solar energy to electrical energy. This has encouraged the development of better and more efficient solar cells (SCs). Numerous investigations have been conducted into synthesizing novel semiconductor materials and tuning the electronic properties based on the shape, size, composition, and assembly of the quantum dots to improve hybrid assemblies. Recent studies that are determining the prospects of quantum dot SCs can form the basis for improving photovoltaic efficiency. Here, we have reviewed studies that investigated the sensitization methods for fabricating highly efficient SCs. We also discussed some examples that would help other researchers who want to sensitize quantum dot (QD) SCs. Thereafter, we analyzed the main and popular strategies that can be used for sensitizing the QD SCs within the limitations, advantages, and prospects of fabricating high-efficiency and stable QDs. During this work, we offered strong technical support and a theoretical basis for improving the industrial applications of QD. In addition, we provide a reference that can inspire other researchers who aim to improve the performance of SCs. © 2023 Author(s). |
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Najm, A.S. Selvanathan, V. Aljuwaya, T.M. Sabri, L.S. Jamal, M.S. Abdullah Al-Zahrani, A. Holi, A.M. Jaber, I. Al Ghamdi, A. Amin, M.T. Sopian, K. Ismail, R.A. Moria, H. Bais, B. Majdi, H.S. Chowdhury, S. Sultan, A.J. Alhuzaymi, T.M. |
spellingShingle |
Najm, A.S. Selvanathan, V. Aljuwaya, T.M. Sabri, L.S. Jamal, M.S. Abdullah Al-Zahrani, A. Holi, A.M. Jaber, I. Al Ghamdi, A. Amin, M.T. Sopian, K. Ismail, R.A. Moria, H. Bais, B. Majdi, H.S. Chowdhury, S. Sultan, A.J. Alhuzaymi, T.M. Recent progress in performance improvement strategies for quantum dot sensitization methods: Challenges, achievements, and future prospects |
author_facet |
Najm, A.S. Selvanathan, V. Aljuwaya, T.M. Sabri, L.S. Jamal, M.S. Abdullah Al-Zahrani, A. Holi, A.M. Jaber, I. Al Ghamdi, A. Amin, M.T. Sopian, K. Ismail, R.A. Moria, H. Bais, B. Majdi, H.S. Chowdhury, S. Sultan, A.J. Alhuzaymi, T.M. |
author_sort |
Najm, A.S. |
title |
Recent progress in performance improvement strategies for quantum dot sensitization methods: Challenges, achievements, and future prospects |
title_short |
Recent progress in performance improvement strategies for quantum dot sensitization methods: Challenges, achievements, and future prospects |
title_full |
Recent progress in performance improvement strategies for quantum dot sensitization methods: Challenges, achievements, and future prospects |
title_fullStr |
Recent progress in performance improvement strategies for quantum dot sensitization methods: Challenges, achievements, and future prospects |
title_full_unstemmed |
Recent progress in performance improvement strategies for quantum dot sensitization methods: Challenges, achievements, and future prospects |
title_sort |
recent progress in performance improvement strategies for quantum dot sensitization methods: challenges, achievements, and future prospects |
publisher |
American Institute of Physics Inc. |
publishDate |
2023 |
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http://scholars.utp.edu.my/id/eprint/37359/ https://www.scopus.com/inward/record.uri?eid=2-s2.0-85171534055&doi=10.1063%2f5.0166032&partnerID=40&md5=512cc79ec1f61b4d9d9161034ad9583f |
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1779441370900987904 |
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13.214268 |