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Amber N. Hancock

Affiliations: 
University of Melbourne, Parkville, Victoria, Australia 
Area:
Physical Organic, Radicals
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"Amber Hancock"
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Publications

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Grimm M, Suleman NK, Hancock AN, et al. (2020) Stereoelectronic and Resonance Effects on the Rate of Ring Opening of N-Cyclopropyl-Based Single Electron Transfer Probes. Journal of the American Chemical Society
Oliver L, Ragam S, Deslongchamps P, et al. (2020) Application of the Variable Oxygen Probe to Derivatives of 2,6-Dimethyltetrahydropyran-4-ol: Evidence for Through-Bond nO–σCC–σ*CO Interactions Australian Journal of Chemistry
Barzegar Amiri Olia M, Hancock AN, Schiesser CH, et al. (2018) Photophysical insights and guidelines for blue “turn-on” fluorescent probes for the direct detection of nitric oxide (NO• ) in biological systems Journal of Physical Organic Chemistry. 32: e3896
Wille U, Nathanael JG, Hancock AN. (2016) Reaction of Amino Acids, Di- and Tripeptides with the Environmental Oxidant NO3*: A Laser Flash Photolysis and Computational Study. Chemistry, An Asian Journal
Bénéteau R, Boussonnière A, Rouaud JC, et al. (2016) Radical Cyclisation of α-Halo Aluminium Acetals: A Mechanistic Study. Chemistry (Weinheim An Der Bergstrasse, Germany)
Hancock AN, Kyne SH, Aitken HM, et al. (2016) Intramolecular homolytic substitution in selenoxides and selenones Tetrahedron. 72: 7790-7795
Hering T, Slanina T, Hancock A, et al. (2015) Visible light photooxidation of nitrate: The dawn of a nocturnal radical Chemical Communications. 51: 6568-6571
Hancock AN, Lobachevsky S, Haworth NL, et al. (2015) The effect of leaving radical on the formation of tetrahydroselenophene by SHi ring closure: an experimental and computational study. Organic & Biomolecular Chemistry. 13: 2310-6
Hancock AN, Lobachevsky S, Haworth NL, et al. (2015) The effect of leaving radical on the formation of tetrahydroselenophene by SHi ring closure: An experimental and computational study Organic and Biomolecular Chemistry. 13: 2310-2316
Wallace CM, Schiesser CH, Hancock AN. (2015) Slow homolytic substitution reactions at selenium: 2-Selenabicyclo[1.1.1]pentane Computational and Theoretical Chemistry. 1068: 128-133
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