N
Nicholas H. Rees
Researcher at University of Oxford
Publications - 82
Citations - 2329
Nicholas H. Rees is an academic researcher from University of Oxford. The author has contributed to research in topics: Agostic interaction & Nuclear magnetic resonance spectroscopy. The author has an hindex of 25, co-authored 80 publications receiving 1976 citations. Previous affiliations of Nicholas H. Rees include Moscow State University.
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Biotransformation of the sesquiterpene (+)-valencene by cytochrome P450cam and P450BM-3
TL;DR: Oxidation of the sesquiterpene (+)-valencene by wild type and mutants of P450cam and P450BM-3 of Bacillus megaterium have been investigated as a potential route to (+)-nootkatone, a fine fragrance, and the selectivity patterns suggest that (+)-Valencene has one binding orientation in P 450cam but multiple orientations in P450 BM-3.
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Separating Electrophilicity and Lewis Acidity: The Synthesis, Characterization, and Electrochemistry of the Electron Deficient Tris(aryl)boranes B(C6F5)3–n(C6Cl5)n (n = 1–3)
Andrew E. Ashley,Thomas J. Herrington,Gregory G. Wildgoose,Hasna Zaher,Amber L. Thompson,Nicholas H. Rees,Tobias Krämer,Dermot O'Hare +7 more
TL;DR: Compounds 3, 5, and 6 have been structurally characterized using single crystal X-ray diffraction and represent the first structure determinations for compounds featuring B-C(6)Cl(5) bonds; each exhibits a trigonal planar geometry about B, despite having different ligand sets.
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What Triggers Oxygen Loss in Oxygen Redox Cathode Materials
Robert A. House,Urmimala Maitra,Liyu Jin,Juan G. Lozano,James W. Somerville,Nicholas H. Rees,Andrew J. Naylor,Laurent Duda,Felix Massel,Alan V. Chadwick,Silvia Ramos,David M. Pickup,Daniel McNally,Xingye Lu,Thorsten Schmitt,Matthew R. Roberts,Peter G. Bruce +16 more
TL;DR: In this article, it is shown that it is possible to increase the charge capacity of transition metal (TM) oxide cathodes in alkali-ion batteries by invoking redox reactions on the oxygen.
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Zirconium Complexes of Diamine−Bis(phenolate) Ligands: Synthesis, Structures, and Solution Dynamics
TL;DR: A family of new organometallic and coordination compounds supported by diamine−bis(phenolate) ligands O2NNMe and O2NtBu are reported in this article.
Journal ArticleDOI
Nonclassical Titanocene Silyl Hydrides
Stanislav K. Ignatov,Nicholas H. Rees,Ben R. Tyrrell,Stuart R. Dubberley,Alexei G. Razuvaev,Philip Mountford,Georgii I. Nikonov +6 more
TL;DR: Spectroscopic and structural data established that these titanocene silyl hydride complexes exhibit nonclassical Ti-H-Si-Cl interligand hypervalent interactions and exhibit bond paths between the silicon and hydrid atoms in Atoms in Molecules (AIM) studies.