Jonathan McMaster
Overview
Explore the profile of Jonathan McMaster including associated specialties, affiliations and a list of published articles.
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100
Citations
986
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Recent Articles
1.
Liu Y, Coles N, Cajiao N, Taylor L, Davies E, Barbour A, et al.
Chem Sci
. 2024 Jun;
15(25):9599-9611.
PMID: 38939136
The scission and homologation of CO is a fundamental process in the Fischer-Tropsch reaction. However, given the heterogeneous nature of the catalyst and forcing reaction conditions, it is difficult to...
2.
Valentine A, Geer A, Blundell T, Tovey W, Cliffe M, Davies E, et al.
Dalton Trans
. 2022 Nov;
51(47):18118-18126.
PMID: 36377852
Two-coordinate transition metal complexes are exciting candidates for single-molecule magnets (SMMs) because their highly axial coordination environments lead to sizeable magnetic anisotropy. We report a series of five structurally related...
3.
Valentine A, Taylor L, Geer A, Huke C, Wood K, Tovey W, et al.
Organometallics
. 2022 Sep;
41(11):1426-1433.
PMID: 36157255
The effects of -substitution on the structural and electronic properties of four series of two-coordinate -terphenyl Group 12 complexes (R-Ar)M (M = Zn, Cd, Hg; R = -Bu -, SiMe...
4.
Volkov V, McMaster J, Aizenberg J, Perry C
Chem Sci
. 2022 Jan;
13(1):133-140.
PMID: 35059161
We report how Raman difference imaging provides insight on cellular biochemistry as a function of sub-cellular dimensions and the cellular environment. We show that this approach offers a sensitive diagnostic...
5.
Liu Y, Taylor L, Argent S, McMaster J, Kays D
Inorg Chem
. 2021 Jul;
60(14):10114-10123.
PMID: 34197113
A series of group 11 -terphenyl complexes have been synthesized via a metathesis reaction from the iron(II) complexes (2,6-MesCH)Fe and (2,6-XylCH)Fe (Mes = 2,4,6-MeCH; Xyl = 2,6-MeCH). [2,6-MesCHM] (, M...
6.
Valentine A, Geer A, Taylor L, Teale A, Wood K, Williams H, et al.
Dalton Trans
. 2020 Dec;
50(2):722-728.
PMID: 33346293
The effect of para-substitution upon the structural and electronic properties of a series of m-terphenyl lithium complexes [R-Ar-Li] (R = t-Bu 1, SiMe2, H 3, Cl 4, CF5; where R-Ar...
7.
Blundell T, Taylor L, Valentine A, Lewis W, Blake A, McMaster J, et al.
Chem Commun (Camb)
. 2020 Jul;
56(58):8139-8142.
PMID: 32691803
The reaction between a two-coordinate Co(ii) diaryl complex and "GaI" affords 2,6-Pmp2C6H3CoGa3I5, in a new geometry for a heavier group 13-transition metal cluster. Experimental and computational investigations show that this...
8.
Planchestainer M, McMaster J, Schulz C, Paradisi F, Albrecht M
Chemistry
. 2020 Jun;
26(66):15206-15211.
PMID: 32543723
The role of His145 in the T1 copper center of nitrite reductase (NiR) is pivotal for the activity of the enzyme. Mutation to a glycine at this position enables the...
9.
Mangham B, Hanson-Heine M, Davies E, Wriglesworth A, George M, Lewis W, et al.
Phys Chem Chem Phys
. 2020 Feb;
22(8):4429-4438.
PMID: 32051990
A strategy to create organic molecules with high degrees of radical spin multiplicity is reported in which molecular design is correlated with the behaviour of radical anions in a series...
10.
Quinn S, Davies E, Pfeiffer C, Lewis W, McMaster J, Champness N
Chempluschem
. 2020 Jan;
82(3):489-492.
PMID: 31962014
Functionalization of the aromatic core of naphthalene diimide (NDI) chromophores with morpholine substituents leads to molecules with strong absorbance in the visible spectrum. The shift of absorption maxima to lower...