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Dive into the research topics where Kevin B. Vincent is active.

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Featured researches published by Kevin B. Vincent.


Inorganic Chemistry | 2014

A Combined Computational and Spectroelectrochemical Study of Platinum-Bridged Bis-Triarylamine Systems

Matthias Parthey; Kevin B. Vincent; Manuel Renz; Phil A. Schauer; Dmitry S. Yufit; Judith A. K. Howard; Martin Kaupp; Paul J. Low

The character of the electronic transitions in the ultraviolet-visible-near infrared (UV-vis-NIR) spectra of platinum-bis(alkynyl) bridged, bis-triarylamine mixed-valence systems trans-[Pt(C≡CC6H4NAr2)2 (PR3)2](n+) (R = ethyl, Ar = C6H4CH3-4 (1) or C6H4OCH3-4 (2); R = Ph, Ar = C6H4CH3-4 (3) or C6H4OCH3-4 (4), n = 0, 1, 2) has been determined from a combination of spectroscopic measurement and density functional theory calculations. The hybrid functional BLYP35 in combination with a suitable solvent model (i.e., conductor-like screening model (COSMO)) has been used to model the UV-vis-NIR and IR spectroscopic properties of [1-4](+), to confirm the description of [1-4](+) as examples of metal-bridged organic mixed-valence compounds, and to assign the principal features of the electronic spectra, including the triarylamine-based intervalence charge transfer transition located in the NIR region. The successful modeling of the charge distribution within the system demonstrates the utility of the BLYP35-COSMO protocol as a tool for use in the study of intramolecular charge transfer properties in mixed-valence complexes.


Journal of Molecular Graphics & Modelling | 2013

A structural and functional model for human bone sialoprotein.

Kevin B. Vincent; Marcus C. Durrant

Human bone sialoprotein (BSP) is an essential component of the extracellular matrix of bone. It is thought to be the primary nucleator of hydroxyapatite crystallization, and is known to bind to hydroxyapatite, collagen, and cells. Mature BSP shows extensive post-translational modifications, including attachment of glycans, sulfation, and phosphorylation, and is highly flexible with no specific 2D or 3D structure in solution or the solid state. These features have severely limited the experimental characterization of the structure of this protein. We have therefore developed a 3D structural model for BSP, based on the available literature data, using molecular modelling techniques. The complete model consists of 301 amino acids, including six phosphorylated serines and two sulfated tyrosines, plus 92 N- and O-linked glycan residues. A notable feature of the model is a large acidic patch that provides a surface for binding Ca(2+) ions. Density functional theory quantum calculations with an implicit solvent model indicate that Ca(2+) ions are bound most strongly by the phosphorylated serines within BSP, along with reasonably strong binding to Asp and Glu, but weak binding to His and sulfated tyrosine. The process of early hydroxyapatite nucleation has been studied by molecular dynamics on an acidic surface loop of the protein; the results suggest that the cationic nature of the loop promotes nucleation by attracting Ca(2+) ions, while its flexibility allows for their rapid self-assembly with PO(4)(3-) ions, rather than providing a regular template for crystallization. The binding of a hydroxyapatite crystal at the proteins acidic patch has also been modelled. The relationships between hydroxyapatite, collagen and BSP are discussed.


Organometallics | 2013

Syntheses, Spectroelectrochemical Studies, and Molecular and Electronic Structures of Ferrocenyl Ene-diynes

Kevin B. Vincent; Qiang Zeng; Matthias Parthey; Dmitry S. Yufit; Judith A. K. Howard; František Hartl; Martin Kaupp; Paul J. Low


Journal of Organometallic Chemistry | 2016

Tetrakis(ferrocenylethynyl)ethene: Synthesis, (Spectro)electrochemical and quantum chemical characterisation

Kevin B. Vincent; Joseph B. G. Gluyas; Simon Gückel; Qiang Zeng; František Hartl; Martin Kaupp; Paul J. Low


Journal of Cluster Science | 2012

Synthesis, Structure and Electrochemical Properties of Triarylamine Bridged Dicobaltdicarbon Tetrahedrane Clusters

Wing Y. Man; Kevin B. Vincent; Howard J. Spencer; Dmitry S. Yufit; Judith A. K. Howard; Paul J. Low


Dalton Transactions | 2017

Sandwich and half-sandwich metal complexes derived from cross-conjugated 3-methylene-penta-1,4-diynes

Kevin B. Vincent; Josef B. G. Gluyas; Qiang Zeng; Dmitry S. Yufit; Judith A. K. Howard; František Hartl; Paul J. Low


Polyhedron | 2015

Synthesis and redox properties of mono-, di- and tri-metallic platinum-ethynyl complexes based on the trans-Pt(C6H4N{C6H4OCH3-4}2)(CCR)(PPh3)2 motif

Kevin B. Vincent; Matthias Parthey; Dmitry S. Yufit; Martin Kaupp; Paul J. Low


Journal of Organic Chemistry | 2015

Cross-Conjugated Systems Based On An (E)-Hexa-3-en-1,5-diyne-3,4-diyl Skeleton: Spectroscopic and Spectroelectrochemical Investigations

Josef B. G. Gluyas; Valentina Manici; Simon Gückel; Kevin B. Vincent; Dmitry S. Yufit; Judith A. K. Howard; Brian W. Skelton; Andrew Beeby; Martin Kaupp; Paul J. Low


Organometallics | 2018

Redox Properties of Ferrocenyl Ene-diynyl-Bridged Cp*(dppe)M–C≡C–1,4-(C6H4) Complexes

Rim Makhoul; Josef B. G. Gluyas; Kevin B. Vincent; Hiba Sahnoune; Jean-François Halet; Paul J. Low; Jean-René Hamon; Claude Lapinte


Archive | 2017

CCDC 1518246: Experimental Crystal Structure Determination

Kevin B. Vincent; Josef B. G. Gluyas; Qiang Zeng; Dmitry S. Yufit; Judith A. K. Howard; František Hartl; Paul J. Low

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Paul J. Low

University of Western Australia

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Josef B. G. Gluyas

University of Western Australia

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Martin Kaupp

Technical University of Berlin

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Matthias Parthey

Technical University of Berlin

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Simon Gückel

Technical University of Berlin

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