Synthesis of new simple hole-transport materials bearing benzodithiazole based core for perovskite solar cells
Cost effectiveness; Cyclic voltammetry; Mass spectrometry; Organic compounds; Perovskite; 5]thiadiazole; Hole transport materials; Mass spectroscopy; Optical parameter; Organic hole transport materials; Photophysical properties; Synthetic routes; Theoretical study; Perovskite solar cells; aromatic h...
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2023
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my.uniten.dspace-242672023-05-29T15:22:31Z Synthesis of new simple hole-transport materials bearing benzodithiazole based core for perovskite solar cells Swetha T. Karim M.R. Alharbi H.F. Alharthi N.H. Bais B. Amin N. Akhtaruzzaman M. 48462163500 56820318000 57188221000 55942800300 9638472600 7102424614 57195441001 Cost effectiveness; Cyclic voltammetry; Mass spectrometry; Organic compounds; Perovskite; 5]thiadiazole; Hole transport materials; Mass spectroscopy; Optical parameter; Organic hole transport materials; Photophysical properties; Synthetic routes; Theoretical study; Perovskite solar cells; aromatic hydrocarbon; fluorine; perovskite; photochemistry; photovoltaic system; purification; transportation Benzo[c][1,2,5]thiadiazole(BT) core-based novel organic hole-transport materials (HTMs) BTT-PMe and BTT-2F are successfully synthesized for perovskite solar cells. The new HTMs are prepared by the simpler synthetic route with cost-effective purification steps. These HTMs are structurally confirmed by NMR, FT-IR and mass spectroscopy. The optical parameters are analysed using the UV�Vis spectrophotometer and cyclic voltammetry. To further confirmation of these properties we conducted the theoretical studies, which are fully matched with the experimental data. We have studied the effect of fluorine atom for its photo physical properties. � 2019 International Solar Energy Society Final 2023-05-29T07:22:30Z 2023-05-29T07:22:30Z 2019 Article 10.1016/j.solener.2019.10.046 2-s2.0-85075478775 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85075478775&doi=10.1016%2fj.solener.2019.10.046&partnerID=40&md5=bb5178bab6a92966f4d0f3f871c0b7eb https://irepository.uniten.edu.my/handle/123456789/24267 194 431 435 Elsevier Ltd Scopus |
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Cost effectiveness; Cyclic voltammetry; Mass spectrometry; Organic compounds; Perovskite; 5]thiadiazole; Hole transport materials; Mass spectroscopy; Optical parameter; Organic hole transport materials; Photophysical properties; Synthetic routes; Theoretical study; Perovskite solar cells; aromatic hydrocarbon; fluorine; perovskite; photochemistry; photovoltaic system; purification; transportation |
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48462163500 Swetha T. Karim M.R. Alharbi H.F. Alharthi N.H. Bais B. Amin N. Akhtaruzzaman M. |
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Swetha T. Karim M.R. Alharbi H.F. Alharthi N.H. Bais B. Amin N. Akhtaruzzaman M. |
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Swetha T. Karim M.R. Alharbi H.F. Alharthi N.H. Bais B. Amin N. Akhtaruzzaman M. Synthesis of new simple hole-transport materials bearing benzodithiazole based core for perovskite solar cells |
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Swetha T. |
title |
Synthesis of new simple hole-transport materials bearing benzodithiazole based core for perovskite solar cells |
title_short |
Synthesis of new simple hole-transport materials bearing benzodithiazole based core for perovskite solar cells |
title_full |
Synthesis of new simple hole-transport materials bearing benzodithiazole based core for perovskite solar cells |
title_fullStr |
Synthesis of new simple hole-transport materials bearing benzodithiazole based core for perovskite solar cells |
title_full_unstemmed |
Synthesis of new simple hole-transport materials bearing benzodithiazole based core for perovskite solar cells |
title_sort |
synthesis of new simple hole-transport materials bearing benzodithiazole based core for perovskite solar cells |
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Elsevier Ltd |
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2023 |
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1806428227803021312 |
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