Please use this identifier to cite or link to this item: https://hdl.handle.net/1959.11/44354
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dc.contributor.authorBagheri, Alien
dc.contributor.authorArandiyan, Hamidrezaen
dc.contributor.authorAdnan, Nik Nik Men
dc.contributor.authorBoyer, Cyrilleen
dc.contributor.authorLim, Mayen
dc.date.accessioned2022-02-24T22:18:12Z-
dc.date.available2022-02-24T22:18:12Z-
dc.date.issued2017-09-26-
dc.identifier.citationMacromolecules, 50(18), p. 7137-7147en
dc.identifier.issn1520-5835en
dc.identifier.issn0024-9297en
dc.identifier.urihttps://hdl.handle.net/1959.11/44354-
dc.description.abstract<p>Lanthanide-doped upconversion nanoparticles (UCNPs) have unique photoluminescent properties that are useful in many biomedical applications. Modification of UCNPs with a polymer layer can confer additional functionality such as biocompatibility, stability <i>in vivo</i>, or drug delivery capability. It is also important that the modification process can be controlled precisely and without having adverse effects on the UCNPs luminescence properties. Herein, a polymer shell was grafted directly from the surface of UCNPs (grafting from) via visible light (λ<sub>max</sub> = 635 nm, 0.7 mW/cm<sup>2</sup>) regulated photoenergy/electron transfer-reversible addition fragmentation chain transfer polymerization (PET-RAFT). The polymerization kinetics, grafting density, and thickness of the surface-tethered polymer chains can be tuned precisely by adjusting the monomer and RAFT agent ratio or the light exposure time. This approach also permits temporal control of the polymerization process. That is, the polymerization process can be initiated, halted, or terminated by switching the light source on and off. By limiting the non-radiative decay caused by surface defects, as well as from vibrational deactivation from solvents, the polymer shell enhanced the upconversion luminescence of the silica-coated UCNPs. This investigation paves the way for the development of UCNPs with controlled properties for various application requirements.</p>en
dc.languageenen
dc.publisherAmerican Chemical Societyen
dc.relation.ispartofMacromoleculesen
dc.titleControlled Direct Growth of Polymer Shell on Upconversion Nanoparticle Surface via Visible Light Regulated Polymerizationen
dc.typeJournal Articleen
dc.identifier.doi10.1021/acs.macromol.7b01405en
local.contributor.firstnameAlien
local.contributor.firstnameHamidrezaen
local.contributor.firstnameNik Nik Men
local.contributor.firstnameCyrilleen
local.contributor.firstnameMayen
local.profile.schoolSchool of Science and Technologyen
local.profile.emailabagheri@une.edu.auen
local.output.categoryC1en
local.record.placeauen
local.record.institutionUniversity of New Englanden
local.publisher.placeUnited States of Americaen
local.format.startpage7137en
local.format.endpage7147en
local.identifier.scopusid85029957377en
local.peerreviewedYesen
local.identifier.volume50en
local.identifier.issue18en
local.contributor.lastnameBagherien
local.contributor.lastnameArandiyanen
local.contributor.lastnameAdnanen
local.contributor.lastnameBoyeren
local.contributor.lastnameLimen
dc.identifier.staffune-id:abagherien
local.profile.orcid0000-0003-3484-5856en
local.profile.roleauthoren
local.profile.roleauthoren
local.profile.roleauthoren
local.profile.roleauthoren
local.profile.roleauthoren
local.identifier.unepublicationidune:1959.11/44354en
local.date.onlineversion2017-09-15-
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
dc.identifier.academiclevelAcademicen
local.title.maintitleControlled Direct Growth of Polymer Shell on Upconversion Nanoparticle Surface via Visible Light Regulated Polymerizationen
local.output.categorydescriptionC1 Refereed Article in a Scholarly Journalen
local.search.authorBagheri, Alien
local.search.authorArandiyan, Hamidrezaen
local.search.authorAdnan, Nik Nik Men
local.search.authorBoyer, Cyrilleen
local.search.authorLim, Mayen
local.uneassociationNoen
local.atsiresearchNoen
local.sensitive.culturalNoen
local.identifier.wosid000411918700014en
local.year.available2017-
local.year.published2017-
local.fileurl.closedpublishedhttps://rune.une.edu.au/web/retrieve/e473bba2-4e5c-4f0f-b54b-f8a872f61d56en
local.subject.for2020340302 Macromolecular materialsen
local.subject.seo2020120304 Polymeric materials and paintsen
local.subject.seo2020280105 Expanding knowledge in the chemical sciencesen
Appears in Collections:Journal Article
School of Science and Technology
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