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dc.contributor.authorTan, N.S.L.
dc.contributor.authorNealon, G.L.
dc.contributor.authorLynam, J.M.
dc.contributor.authorSobolev, A.N.
dc.contributor.authorRowles, Matthew
dc.contributor.authorOgden, Mark
dc.contributor.authorMassi, Max
dc.contributor.authorLowe, Andrew
dc.date.accessioned2020-02-11T05:08:33Z
dc.date.available2020-02-11T05:08:33Z
dc.date.issued2019
dc.identifier.citationTan, N.S.L. and Nealon, G.L. and Lynam, J.M. and Sobolev, A.N. and Rowles, M.R. and Ogden, M.I. and Massi, M. et al. 2019. A (2-(naphthalen-2-yl)phenyl)rhodium(i) complex formed by a proposed intramolecular 1,4-: Ortho-To-ortho ′ Rh metal-Atom migration and its efficacy as an initiator in the controlled stereospecific polymerisation of phenylacetylene. Dalton Transactions. 48 (43): pp. 16437-16447.
dc.identifier.urihttp://hdl.handle.net/20.500.11937/77878
dc.identifier.doi10.1039/c9dt02953b
dc.description.abstract

© The Royal Society of Chemistry. The synthesis of a novel Rh(i)-Aryl complex is detailed and its ability to serve as an initiator in the stereospecific polymerisation of phenylacetylene evaluated. Targeting the Rh(i) species, (2-phenylnaphthalen-1-yl)rhodium(i)(2,5-norbornadiene)tris(para-fluorophenylphosphine), Rh(nbd)(P(4-FC6H4)3)(2-PhNapth), following recrystallization we obtained the isomeric (2-(naphthalen-2-yl)phenyl)rhodium(i) complex, Rh(nbd)(P(4-FC6H4)3)(2-NapthPh), as determined by X-ray single-crystal structure analysis, and confirmed by X-ray powder diffraction. The isolation of the latter species was proposed to occur from the target (2-PhNapth) derivative via an intramolecular 1,4-Rh atom migration. This supposition was supported by density functional theory (DFT) calculations that indicated the isolated (2-NapthPh) derivative has lower energy (-19 kJ mol-1) than the targeted complex. The structure of the isolated (2-NapthPh) species was confirmed by multinuclear NMR spectroscopy including 2D 31P-103Rh{1H, 103Rh}, heteronuclear multiple-quantum correlation (HMQC) experiments; however, NMR analysis indicated the presence of a second, minor species in solution in an approximate 1:4 ratio with the 2-NapthPh complex. The minor species was identified as a second structural isomer, the 3-phenylnaphthyl derivative, proposed to be formed under a dynamic equilibrium with the 2-NapthPh derivative via a second 1,4-Rh atom migration. DFT calculations indicate that this 1,4-migration proceeds through a low-energy pathway involved in the oxidative addition of a C-H bond to Rh followed by a reductive elimination with the distribution of the products being thermodynamically controlled. The recrystallized Rh(nbd)(P(4-FC6H4)3)(2-NapthPh) complex was subsequently evaluated as an initiator in the polymerisation of phenylacetylene (PA); gratifyingly, the Rh(i) species was an active initiating species with the pseudo-first-order kinetic and molecular weight evolution vs time plots both linear implying a controlled polymerisation while yielding (co)polymers with low dispersities (= Mw/Mn typically ≤1.25) and high cis-Transoidal stereoregularity (>95%). Typical initiation efficiencies, while not quantitative (as judged by size exclusion chromatography), were nonetheless high at ca. 0.8. The presence of the minor 3-phenylnaphthyl species when in solution is proposed to be the cause of the observed non-quantitative initiation.

dc.languageEnglish
dc.publisherROYAL SOC CHEMISTRY
dc.subjectScience & Technology
dc.subjectPhysical Sciences
dc.subjectChemistry, Inorganic & Nuclear
dc.subjectChemistry
dc.subjectSENSE-SELECTIVE POLYMERIZATION
dc.subjectBULKY ARYL ISOCYANIDE
dc.subjectAUXILIARY BASIS-SETS
dc.subjectLIVING POLYMERIZATION
dc.subjectGEOMETRY OPTIMIZATION
dc.subjectRHODIUM CATALYSTS
dc.subjectLIGAND
dc.subjectSHIFT
dc.subjectPOLYACETYLENES
dc.subjectDERIVATIVES
dc.titleA (2-(naphthalen-2-yl)phenyl)rhodium(i) complex formed by a proposed intramolecular 1,4-: Ortho-To-ortho ′ Rh metal-Atom migration and its efficacy as an initiator in the controlled stereospecific polymerisation of phenylacetylene
dc.typeJournal Article
dcterms.source.volume48
dcterms.source.number43
dcterms.source.startPage16437
dcterms.source.endPage16447
dcterms.source.issn1477-9226
dcterms.source.titleDalton Transactions
dc.date.updated2020-02-11T05:08:33Z
curtin.departmentJohn de Laeter Centre (JdLC)
curtin.departmentSchool of Molecular and Life Sciences (MLS)
curtin.accessStatusFulltext not available
curtin.facultyFaculty of Science and Engineering
curtin.contributor.orcidOgden, Mark [0000-0001-5317-1637]
curtin.contributor.orcidLowe, Andrew [0000-0002-7874-2050]
curtin.contributor.orcidRowles, Matthew [0000-0002-7448-6774]
curtin.contributor.orcidMassi, Max [0000-0001-6949-4019]
curtin.contributor.researcheridLowe, Andrew [C-4684-2015]
dcterms.source.eissn1477-9234
curtin.contributor.scopusauthoridOgden, Mark [7005364420]
curtin.contributor.scopusauthoridLowe, Andrew [7202836082]
curtin.contributor.scopusauthoridRowles, Matthew [24476696900]
curtin.contributor.scopusauthoridMassi, Max [7102368846]


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