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Electrostatically driven resonance energy transfer in “cationic” biocompatible indium phosphide quantum dots

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dc.contributor.author Rao, Anish
dc.date.accessioned 2026-01-21T09:44:50Z
dc.date.available 2026-01-21T09:44:50Z
dc.date.issued 2017-03
dc.identifier.uri https://pubs.rsc.org/en/content/articlehtml/2017/sc/c7sc00592j
dc.identifier.uri http://dspace.bits-pilani.ac.in:8080/jspui/handle/123456789/20605
dc.description.abstract Indium Phosphide Quantum Dots (InP QDs) have emerged as an alternative to toxic metal ion based QDs in nanobiotechnology. The ability to generate cationic surface charge, without compromising stability and biocompatibility, is essential in realizing the full potential of InP QDs in biological applications. We have addressed this challenge by developing a place exchange protocol for the preparation of cationic InP/ZnS QDs. The quaternary ammonium group provides the much required permanent positive charge and stability to InP/ZnS QDs in biofluids. The two important properties of QDs, namely bioimaging and light induced resonance energy transfer, are successfully demonstrated in cationic InP/ZnS QDs. The low cytotoxicity and stable photoluminescence of cationic InP/ZnS QDs inside cells make them ideal candidates as optical probes for cellular imaging. An efficient resonance energy transfer (E ∼ 60%) is observed, under physiological conditions, between the cationic InP/ZnS QD donor and anionic dye acceptor. A large bimolecular quenching constant along with a linear Stern–Volmer plot confirms the formation of a strong ground state complex between the cationic InP/ZnS QDs and the anionic dye. Control experiments prove the role of electrostatic attraction in driving the light induced interactions, which can rightfully form the basis for future nano-bio studies between cationic InP/ZnS QDs and anionic biomolecules. en_US
dc.language.iso en en_US
dc.publisher RSC en_US
dc.subject Chemistry en_US
dc.subject Bioimaging en_US
dc.subject Resonance energy transfer en_US
dc.subject Electrostatic interactions en_US
dc.title Electrostatically driven resonance energy transfer in “cationic” biocompatible indium phosphide quantum dots en_US
dc.type Article en_US


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