| Literature DB >> 27383453 |
Monoj Kumar Barman1, Bipattaran Paramanik1, Dipankar Bain1, Amitava Patra2.
Abstract
Several strategies have been adopted to design an artificial light-harvesting system in which light energy is captured by peripheral chromophores and it is subsequently transferred to the core via energy transfer. A composite of carbon dots and dye-encapsulated BSA-protein-capped gold nanoclusters (AuNCs) has been developed for efficient light harvesting and white light generation. Carbon dots (C-dots) act as donor and AuNCs capped with BSA protein act as acceptor. Analysis reveals that energy transfer increases from 63 % to 83 % in presence of coumarin dye (C153), which enhances the cascade energy transfer from carbon dots to AuNCs. Bright white light emission with a quantum yield of 19 % under the 375 nm excitation wavelength is achieved by changing the ratio of components. Interesting findings reveal that the efficient energy transfer in carbon-dot-metal-cluster nanocomposites may open up new possibilities in designing artificial light harvesting systems for future applications.Entities:
Keywords: carbon dots; cascade energy transfer; gold nanoclusters; light harvesting; white light
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Year: 2016 PMID: 27383453 DOI: 10.1002/chem.201601849
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236