Highly Efficient Cd-Free Alloyed Core/Shell Quantum Dots with Optimized Precursor Concentrations

dc.contributor.author Altintas, Yemliha
dc.contributor.author Talpur, Mohammad Younis
dc.contributor.author Unlu, Miray
dc.contributor.author Mutlugun, Evren
dc.contributor.department AGÜ, Mühendislik Fakültesi, Elektrik - Elektronik Mühendisliği Bölümü en_US
dc.contributor.institutionauthor Mutlugun, Evren
dc.contributor.institutionauthor Altintas, Yemliha
dc.contributor.institutionauthor Talpur, Mohammad Younis
dc.contributor.institutionauthor Unlu, Miray
dc.date.accessioned 2021-08-26T11:10:24Z
dc.date.available 2021-08-26T11:10:24Z
dc.date.issued 2016 en_US
dc.description The authors are thankful for the financial support from TUBITAK grant nos. 114E107, 5140079, and BAGEP 2014 Award. M.Y.T. acknowledges support from TUBITAK 2221 fellowship program. The authors further acknowledge Prof. Hilmi Volkan Demir and his research group at Bilkent University for support in time-resolved photoluminescence measurements. en_US
dc.description.abstract The chemical composition, the emission spectral bandwidth, and photoluminescence quantum yield of a semiconductor quantum dot (QD) play an important role in the assessment of the performance of the applications related to the quantum dots. Quantum dots based on environmentally friendly compositions with high optical performance have been in demand for high-end technological applications. In this work, we propose and demonstrate a detailed synthesis approach for environmentally friendly and highly efficient InPZnS alloy/ZnS shell quantum dots. Following a systematic study of the ratio and type of the precursors involved, we achieved alloyed core shell InPZnS/ZnS QDs with tunable emission across the visible spectrum, having a record quantum efficiency up to 78% along with a full width at half-maximum as narrow as 45 nm. The effect of the systematic shell growth has been further investigated using time-resolved photoluminescence characterizations along with the observation of the suppression of the nonradiative decay channels, with the photoluminescence lifetime prolonged from 20.3 to 50.4 ns. The development of highly efficient and environmentally friendly QDs will pave the way for robust, sustainable optoelectronic applications. en_US
dc.description.sponsorship Turkiye Bilimsel ve Teknolojik Arastirma Kurumu (TUBITAK) 114E107 5140079 2221 en_US
dc.identifier.issn 1932-7447
dc.identifier.uri https://doi.org/10.1021/acs.jpcc.6b01977
dc.identifier.uri https://hdl.handle.net/20.500.12573/959
dc.identifier.volume Volume 120 Issue 14 Page 7885-7892 en_US
dc.language.iso eng en_US
dc.publisher AMER CHEMICAL SOC1155 16TH ST, NW, WASHINGTON, DC 20036 en_US
dc.relation.isversionof 10.1021/acs.jpcc.6b01977 en_US
dc.relation.journal JOURNAL OF PHYSICAL CHEMISTRY C en_US
dc.relation.publicationcategory Makale - Uluslararası - Editör Denetimli Dergi en_US
dc.relation.tubitak 114E107
dc.relation.tubitak 5140079
dc.relation.tubitak 2221
dc.rights info:eu-repo/semantics/closedAccess en_US
dc.subject SENSORS en_US
dc.subject INP en_US
dc.subject INP/ZNS NANOCRYSTALS en_US
dc.subject LIGHT-EMITTING-DIODES en_US
dc.title Highly Efficient Cd-Free Alloyed Core/Shell Quantum Dots with Optimized Precursor Concentrations en_US
dc.type article en_US

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