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Disubstituted Aminoanthraquinone-Based Photoinitiators for Free Radical Polymerization and Fast 3D Printing under Visible Light

dc.contributor.authorZhang, Jing
dc.contributor.authorLaunay, K.
dc.contributor.authorHill, Nicholas
dc.contributor.authorZhu, Di
dc.contributor.authorCox, Nicholas
dc.contributor.authorLangley, Julien
dc.contributor.authorLalevee, J.
dc.contributor.authorStenzel, Martina H.
dc.contributor.authorCoote, Michelle
dc.contributor.authorXiao, Pu
dc.date.accessioned2019-04-13T01:32:01Z
dc.date.issued2018
dc.date.updated2019-03-12T07:25:05Z
dc.description.abstractThe development of highly efficient and rapid photoinitiating systems for free radical photopolymerization under the irradiation of visible light has attracted increasing attention due to their widespread potential applications in, for example, 3D printing or dental polymers. Unfortunately, currently available visible-light-sensitive photoinitiators are not efficient enough for 3D printing applications suffering from low printing speeds. Here we describe a series of photoinitiating systems consisting of disubstituted aminoanthraquinone derivatives (i.e., 1-amino-4-hydroxyanthraquinone, 1,4-diaminoanthraquinone, and 1,5-diaminoanthraquinone) and various additives (e.g., tertiary amine and phenacyl bromide) toward the free radical photopolymerization of various acrylate monomers (such as commercial 3D resin) under the irradiation of blue to red LEDs. It is shown that the type and position of substituents of the aminoanthraquinone derivative can significantly affect its photoinitiation properties. The most efficient disubstituted aminoanthraquinone derivative-based photoinitiating system was selected and used for the 3D printing of a commercial 3D resin in a 3D printer with polychromatic visible light as the irradiation source. It is shown that its printing speed was dramatically enhanced compared to a commercial photoinitiator 2,4,6-trimethylbenzoyldiphenylphosphine oxide (TPO).en_AU
dc.description.sponsorshipP.X. acknowledges funding from the Australian Research Council Future Fellowship (FT170100301). M.L.C. gratefully acknowledges support from the ARC Centre of Excellence for Electromaterials Science, a Georgina Sweet ARC Laureate Fellowship (FL170100041) and generous allocations of supercomputing time on the National Facility of the Australian National Computational Infrastructure. N.C. acknowledges funding from the Australian Research Council (FT140100834). EPR equipment is funded through the ARC LIEF program (LE170100023).
dc.format.mimetypeapplication/pdfen_AU
dc.identifier.issn0024-9297en_AU
dc.identifier.urihttp://hdl.handle.net/1885/159543
dc.language.isoen_AUen_AU
dc.provenancehttps://v2.sherpa.ac.uk/id/publication/7790..."The Accepted Version can be archived in a Non-Commercial Institutional Repository If Required by Funder, If Required by Institution. 12 months embargo " from SHERPA/RoMEO site (as at 26/03/2021).
dc.publisherAmerican Chemical Societyen_AU
dc.relationhttp://purl.org/au-research/grants/arc/FT170100301
dc.relationhttp://purl.org/au-research/grants/arc/FL170100041
dc.relationhttp://purl.org/au-research/grants/arc/FT140100834
dc.relationhttp://purl.org/au-research/grants/arc/LE170100023
dc.sourceMacromoleculesen_AU
dc.titleDisubstituted Aminoanthraquinone-Based Photoinitiators for Free Radical Polymerization and Fast 3D Printing under Visible Lighten_AU
dc.typeJournal articleen_AU
dcterms.accessRightsOpen Access
local.bibliographicCitation.lastpage10112en_AU
local.bibliographicCitation.startpage10104en_AU
local.contributor.affiliationZhang, Jing, College of Science, ANUen_AU
local.contributor.affiliationLaunay, K, University of New South Walesen_AU
local.contributor.affiliationHill, Nicholas, College of Science, ANUen_AU
local.contributor.affiliationZhu, Di, College of Science, ANUen_AU
local.contributor.affiliationCox, Nicholas, College of Science, ANUen_AU
local.contributor.affiliationLangley, Julien, College of Science, ANUen_AU
local.contributor.affiliationLalevee, J, Universite de Haute-Alsaceen_AU
local.contributor.affiliationStenzel, Martina H, University of New South Walesen_AU
local.contributor.affiliationCoote, Michelle, College of Science, ANUen_AU
local.contributor.affiliationXiao, Pu, College of Science, ANUen_AU
local.contributor.authoruidZhang, Jing, u4066306en_AU
local.contributor.authoruidHill, Nicholas, u6132601en_AU
local.contributor.authoruidZhu, Di, t1813en_AU
local.contributor.authoruidCox, Nicholas, u3286768en_AU
local.contributor.authoruidLangley, Julien, u5586654en_AU
local.contributor.authoruidCoote, Michelle, u4031074en_AU
local.contributor.authoruidXiao, Pu, u1053596en_AU
local.description.notesImported from ARIESen_AU
local.identifier.absfor030701 - Quantum Chemistryen_AU
local.identifier.absfor030305 - Polymerisation Mechanismsen_AU
local.identifier.absseo970103 - Expanding Knowledge in the Chemical Sciencesen_AU
local.identifier.ariespublicationu3102795xPUB148en_AU
local.identifier.citationvolume51en_AU
local.identifier.doi10.1021/acs.macromol.8b02145en_AU
local.identifier.scopusID2-s2.0-85058539327
local.type.statusAccepted Versionen_AU

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