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Number of items: 15.
Article
Adjogatse, E;
Erskine, P;
Wells, SA;
Kelly, JM;
Wilden, JD;
Chan, AWE;
Selwood, D;
... Cooper, JB; + view all
(2018)
Structure and function of L-threonine-3-dehydrogenase from the parasitic protozoan Trypanosoma brucei revealed by X-ray crystallography and geometric simulations.
Acta Crystallographica Section D: Structural Biology
, 74
(9)
pp. 861-876.
10.1107/S2059798318009208.
|
Ambroz, F;
Donnelly, JL;
Wilden, JD;
Macdonald, TJ;
Parkin, IP;
(2019)
Carboxylic Acid Functionalization at the Meso-Position of the Bodipy Core and Its Influence on Photovoltaic Performance.
Nanomaterials
, 9
(10)
, Article 1346. 10.3390/nano9101346.
|
Chowdhury, RM;
Wilden, JD;
(2015)
An improved transition-metal-free synthesis of aryl alkynyl sulfides via substitution of a halide at an sp-centre.
Organic and Biomolecular Chemistry
, 13
(21)
pp. 5859-5861.
10.1039/c5ob00494b.
|
Cuthbertson, J;
Gray, VJ;
Wilden, JD;
(2014)
Observations on transition metal free biaryl coupling: potassium tert-butoxide alone promotes the reaction without diamine or phenanthroline catalysts.
Chemical Communications
, 50
(20)
pp. 2575-2578.
10.1039/c3cc49019j.
|
Cuthbertson, J;
Wilden, JD;
(2015)
Z-selective, anti-Markovnikov addition of alkoxides to terminal alkynes: an electron transfer pathway?
Tetrahedron
, 71
(25)
pp. 4385-4392.
10.1016/j.tet.2015.04.038.
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Donnelly, JL;
Offenbartl-Stiegert, D;
Marín-Beloqui, JM;
Rizello, L;
Battaglia, G;
Clarke, TM;
Howorka, S;
(2020)
Exploring the Relationship between BODIPY Structure and Spectroscopic Properties to Design Fluorophores for Bioimaging.
Chemistry- A European Journal
, 26
(4)
pp. 863-872.
10.1002/chem.201904164.
|
Gray, VJ;
Cuthbertson, J;
Wilden, JD;
(2014)
Transition-metal-free synthesis of ynol ethers and thioynol ethers via displacement at sp centers: a revised mechanistic pathway.
The Journal of Organic Chemistry
, 79
(12)
pp. 5869-5874.
10.1021/jo500814y.
|
Hayes, TOP;
Slater, B;
Horan, RAJ;
Radigois, M;
Wilden, JD;
(2017)
A novel sulfonamide non-classical carbenoid: a mechanistic study for the synthesis of enediynes.
Organic & Biomolecular Chemistry
10.1039/c7ob02437a.
(In press).
|
Li, D;
Ma, TK;
Scott, RJ;
Wilden, JD;
(2020)
Electrochemical radical reactions of alkyl iodides: a highly efficient, clean, green alternative to tin reagents.
Chemical Science
, 11
(20)
pp. 5333-5338.
10.1039/d0sc01694b.
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Li, D;
Seavill, PW;
Wilden, JD;
(2019)
Application of Electrochemical Processes to Classical Iodocyclisation: Utility for Selectivity and Mechanistic Insight.
ChemElectroChem
, 6
(23)
pp. 5829-5835.
10.1002/celc.201901502.
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Seavill, P;
Holt, K;
Wilden, JD;
(2018)
Electrochemical Preparation and Applications of Copper(I) Acetylides: A Demonstration of How Electrochemistry Can Be Used to Facilitate Sustainability in Homogeneous Catalysis.
Green Chemistry
, 20
(24)
pp. 5474-5478.
10.1039/C8GC03262A.
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Seavill, P;
Holt, KB;
Wilden, JD;
(2019)
Investigations Into the Mechanism of Copper-Mediated Glaser-Hay Couplings Using Electrochemical Techniques.
Faraday Discussions
, 220
10.1039/c9fd00031c.
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Seavill, PW;
Holt, KB;
Wilden, JD;
(2019)
Electrochemical synthesis of copper(i) acetylides: Via simultaneous copper ion and catalytic base electrogeneration for use in click chemistry.
RSC Advances
, 9
(50)
pp. 29300-29304.
10.1039/c9ra06782e.
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Seavill, PW;
Wilden, JD;
(2020)
The preparation and applications of amides using electrosynthesis.
Green Chemistry
, 22
(22)
pp. 7737-7759.
10.1039/d0gc02976a.
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Wilden, JD;
Gray, VJ;
(2016)
The chemistry of ynol and thioynol ethers.
Organic and Biomolecular Chemistry
, 14
(41)
pp. 9695-9711.
10.1039/C6OB01776B.
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