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Stable lead-halide perovskite quantum dots as efficient visible light photocatalysts for organic transformations
Lead halide perovskite (LHP) based colloidal quantum dots (CQDs) have tremendous potential for photocatalysis due to their exceptional optical properties. However, their applicability in catalysis is restricted due to poor chemical stability and low recyclability. We report halide-passivated, monodi...
Autores principales: | , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
RSC
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419111/ https://www.ncbi.nlm.nih.gov/pubmed/36132853 http://dx.doi.org/10.1039/d0na00992j |
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author | Pradhan, Sajan Bhujel, Deshaj Gurung, Bikram Sharma, Debesh Basel, Siddhant Rasaily, Sagarmani Thapa, Surakcha Borthakur, Sukanya Ling, Wai Li Saikia, Lakshi Reiss, Peter Pariyar, Anand Tamang, Sudarsan |
author_facet | Pradhan, Sajan Bhujel, Deshaj Gurung, Bikram Sharma, Debesh Basel, Siddhant Rasaily, Sagarmani Thapa, Surakcha Borthakur, Sukanya Ling, Wai Li Saikia, Lakshi Reiss, Peter Pariyar, Anand Tamang, Sudarsan |
author_sort | Pradhan, Sajan |
collection | PubMed |
description | Lead halide perovskite (LHP) based colloidal quantum dots (CQDs) have tremendous potential for photocatalysis due to their exceptional optical properties. However, their applicability in catalysis is restricted due to poor chemical stability and low recyclability. We report halide-passivated, monodisperse CsPbBr(3)CQDs as a stable and efficient visible-light photocatalyst for organic transformations. We demonstrate oxidative aromatization of a wide range of heterocyclic substrates including examples which are poor hydrogen transfer (HAT) reagents. Two to five-fold higher rate kinetics were observed for reactions catalyzed by CsPbBr(3)CQDs in comparison with bulk-type CsPbBr(3) (PNCs) or conventionally synthesized CsPbBr(3)CQDs and other metal organic dyes (rhodamine 6G and [Ru(bpy)(3)](2+)). Furthermore, these CQDs exhibit improved air-tolerance and photostability and in turn show a higher turnover number (TON) of 200, compared to conventionally prepared CQDs (TON = 166) and state-of-the-art bulk-type perovskite-based catalyst (TON = 177). Our study paves the way for the practical applicability of energy-level tunable, size-controlled LHP CQDs as efficient photocatalysts in organic synthesis. |
format | Online Article Text |
id | pubmed-9419111 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | RSC |
record_format | MEDLINE/PubMed |
spelling | pubmed-94191112022-09-20 Stable lead-halide perovskite quantum dots as efficient visible light photocatalysts for organic transformations Pradhan, Sajan Bhujel, Deshaj Gurung, Bikram Sharma, Debesh Basel, Siddhant Rasaily, Sagarmani Thapa, Surakcha Borthakur, Sukanya Ling, Wai Li Saikia, Lakshi Reiss, Peter Pariyar, Anand Tamang, Sudarsan Nanoscale Adv Chemistry Lead halide perovskite (LHP) based colloidal quantum dots (CQDs) have tremendous potential for photocatalysis due to their exceptional optical properties. However, their applicability in catalysis is restricted due to poor chemical stability and low recyclability. We report halide-passivated, monodisperse CsPbBr(3)CQDs as a stable and efficient visible-light photocatalyst for organic transformations. We demonstrate oxidative aromatization of a wide range of heterocyclic substrates including examples which are poor hydrogen transfer (HAT) reagents. Two to five-fold higher rate kinetics were observed for reactions catalyzed by CsPbBr(3)CQDs in comparison with bulk-type CsPbBr(3) (PNCs) or conventionally synthesized CsPbBr(3)CQDs and other metal organic dyes (rhodamine 6G and [Ru(bpy)(3)](2+)). Furthermore, these CQDs exhibit improved air-tolerance and photostability and in turn show a higher turnover number (TON) of 200, compared to conventionally prepared CQDs (TON = 166) and state-of-the-art bulk-type perovskite-based catalyst (TON = 177). Our study paves the way for the practical applicability of energy-level tunable, size-controlled LHP CQDs as efficient photocatalysts in organic synthesis. RSC 2021-01-18 /pmc/articles/PMC9419111/ /pubmed/36132853 http://dx.doi.org/10.1039/d0na00992j Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/ |
spellingShingle | Chemistry Pradhan, Sajan Bhujel, Deshaj Gurung, Bikram Sharma, Debesh Basel, Siddhant Rasaily, Sagarmani Thapa, Surakcha Borthakur, Sukanya Ling, Wai Li Saikia, Lakshi Reiss, Peter Pariyar, Anand Tamang, Sudarsan Stable lead-halide perovskite quantum dots as efficient visible light photocatalysts for organic transformations |
title | Stable lead-halide perovskite quantum dots as efficient visible light photocatalysts for organic transformations |
title_full | Stable lead-halide perovskite quantum dots as efficient visible light photocatalysts for organic transformations |
title_fullStr | Stable lead-halide perovskite quantum dots as efficient visible light photocatalysts for organic transformations |
title_full_unstemmed | Stable lead-halide perovskite quantum dots as efficient visible light photocatalysts for organic transformations |
title_short | Stable lead-halide perovskite quantum dots as efficient visible light photocatalysts for organic transformations |
title_sort | stable lead-halide perovskite quantum dots as efficient visible light photocatalysts for organic transformations |
topic | Chemistry |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9419111/ https://www.ncbi.nlm.nih.gov/pubmed/36132853 http://dx.doi.org/10.1039/d0na00992j |
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