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Simon Woodward
Simon Woodward
Professor of Synthetic Organic Chemistry, Nottingham University
在 nottingham.ac.uk 的电子邮件经过验证
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引用次数
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1 General Annual reviews relevant to transition metal catalysis in organic syntheses have appeared, ¹ while applications to industrial scale chemistry, including the use of …
S WOODWARD
Organometallic Chemistry 20, 353, 1991
1991
1 General Major texts overview catalysis by homogeneous complexes¹ and two annual reviews covering organic synthesis by transition metals are available. 2 The proceedings of a …
S WOODWARD
Organometallic Chemistry 22, 353, 1993
1993
1,4‐Addition of TMSCCl3 to (E)‐Fumaric Esters and Thermal Rearrangement of the Adducts to 3,4‐Dichloropent‐2‐enedioates
B Wahl, DS Lee, S Woodward
European Journal of Organic Chemistry 2015 (27), 6033-6039, 2015
92015
1,4‐Addition of TMSCCl3 to Nitroalkenes: Efficient Reaction Conditions and Mechanistic Understanding
N Wu, B Wahl, S Woodward, W Lewis
Chemistry–A European Journal 20 (25), 7718-7724, 2014
322014
A Case of Severe Steric Aggravation: the X-ray Structural Analysis of cis-Mo (CO) 4 (PCy3) 2
GC Conole, S Woodward, M Kessler, G Sykara
Polyhedron 13, 2455-2458, 1994
1994
A case of severe steric aggravation: X-ray structural analysis of cis-Mo (CO) 4 (PCy3) 2 (CY= cyclo-C6H11)
M Watson, S Woodward, G Conole, M Kessler, G Sykara
Polyhedron 13 (15-16), 2455-2458, 1994
131994
A practical regioselective ring-opening of activated aziridines with organoalanes
F Bertolini, S Woodward, S Crotti, M Pineschi
Tetrahedron Letters 50 (31), 4515-4518, 2009
212009
A Scalable Synthesis of Chiral Himbert Diene Ligands for Asymmetric Catalysis
RK Rit, H Li, SP Argent, KM Wheelhouse, S Woodward, HW Lam
Advanced Synthesis & Catalysis 365 (10), 1629-1639, 2023
32023
A simple preparation of iodoarenes, iodoalkenes and iodoalkynes by reaction of organolithiums with 2, 2, 2-trifluoro-1-iodoethane
IJ Blackmore, AN Boa, EJ Murray, M Dennis, S Woodward
Tetrahedron letters 40 (36), 6671-6672, 1999
551999
A Soluble ‘Ba (Ni-ett)’(ett= 1, 1, 2, 2-Ethenetetrathiolate) Derived Thermoelectric Material
Y Hu, G Rivers, MP Weir, DB Amabilino, CJ Tuck, RD Wildman, ...
Electronic Materials Letters 20 (2), 150-157, 2024
2024
Access to biphenyls by Palladium-catalyzed oxidative coupling of phenyl carbamates and phenols
N Truchan, C Jandl, A Pöthig, S Breitenlechner, T Bach
Synthesis 51 (16), 3060-3076, 2019
42019
Acetic Acid Promoted Direct Iodination of Terminal Alkynes with N-Iodosuccinimide: Efficient Preparation of 1-Iodoalkynes
M Yao, J Zhang, S Yang, E Liu, H Xiong
Synlett 31 (11), 1102-1106, 2020
62020
Aerobic epoxidation via alkyl-2-oxocyclopentanecarboxylate co-oxidation with cobalt or manganese Jacobsen-type catalysts
B Rhodes, S Rowling, P Tidswell, S Woodward, SM Brown
Journal of Molecular Catalysis A: Chemical 116 (3), 375-384, 1997
421997
Allenyl ester precursors for 1H-inden-1-ol carboxylates: comparisons with their propargylic equivalents having terminal alkyne functions
M Asikainen, S Woodward
Tetrahedron 68 (27-28), 5492-5497, 2012
72012
AlMe3-DABCO-Promoted Synthesis of Amides
A Novak, LD Humphreys, MD Walker, S Woodward
Synfacts 2007 (01), 0087-0087, 2007
2007
Aluminum,[??(1, 4? Diazabicyclo [2.2. 2] octane?? N1:? N4)] hexamethyldi
R Nouch, S Woodward
Wiley, 0
Aluminum, [μ‐(1,4‐Diazabicyclo[2.2.2]octane‐κN1:κN4)]hexamethyldi
S Woodward, R Nouch, S Woodward
Encyclopedia of Reagents for Organic Synthesis, 1-4, 2001
12001
Amide bond formation using an air-stable source of AlMe3
A Novak, LD Humphreys, MD Walker, S Woodward
Tetrahedron letters 47 (32), 5767-5769, 2006
802006
Amino-sugar modular ligands—useful cores for the formation of asymmetric copper 1, 4-addition catalysts
A De Roma, F Ruffo, S Woodward
Chemical communications, 5384-5386, 2008
172008
An efficient synthesis of substituted chrysenes
L Eccleshare, S Selzer, S Woodward
Tetrahedron letters 58 (5), 393-395, 2017
72017
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