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Showing results 284 to 303 of 1899 < previous   next >
PreviewIssue DateTitleAuthor(s)
2003C-H and C-C agostic interactions in cycloalkyl tris(pyrazolyl)boratoniobium complexesJaffart, Joelle; Cole, Marcus Lawford; Etienne, Michel; Reinhold, Meike; McGrady, John E.; Maseras, Feliu
2019C-Phycocyanin from Spirulina Inhibits α-synuclein and amyloid-β fibril formation but not amorphous aggregationLiu, Y.; Jovcevski, B.; Pukala, T.L.
2017Cadmium uptake and partitioning in potato (Solanum tuberosum L.) cultivars with different tuber-Cd concentrationMengist, M.; Milbourne, D.; Griffin, D.; McLaughlin, M.; Creedon, J.; Jones, P.; Alves, S.
2000Caerin 4.1, an antibiotic peptide from the Australian Tree Frog, Litoria caerulea. The N.M.R.-derived solution structureChia, C.; Carver, J.; Lindner, R.; Bowie, J.; Wong, H.; Lie, W.
1999Caerulein-like peptides from the skin glands of the Australian Blue Mountains Tree Frog Litoria citropaWabnitz, P.; Bowie, J.; Tyler, M.
2013CaeruleinsBowie, J.; Kastin, A.
1995Cage formation in the reaction 7-tert-butoxynorbornadiene with 2,5-bis(trifluoromethyl)-1,3,4-oxadiazole: X-ray structure, AM1 calculations and mechanistic commentsTiekink, E.; Warrener, R.; Elsey, G.; Russell, R.
2006Calpain inhibitors and compositionsAbell, A.; Neffe, A.; Stuart, B.; Lee, H.; Morton, J.; Coxon, J.; Nikkel, J.; Robertson, L.; Jones, M.; Muir, M.; Bickerstaffe, R.; Miyamoto, S.; Aitken, S.
2010Calpains: Attractive targets for the development of synthetic inhibitorsPietsch, M.; Chua, K.; Abell, A.
2012Can cytosine, thymine and uracil be formed in interstellar regions? A theoretical studyWang, T.; Bowie, J.
2005Capsules and star-burst polyhedra : An [Ag[2]L[2]] capsule and a tetrahedral [Ag[4]L[4]] metallosupramolecular prism with cyclotriveratrylene-type ligandsSumby, C.; Hardie, M.
2005Carbanions: formation, structure and thermochemistryBlanksby, S.; Bowie, J.
2010Carbenoid insertion into the peroxide bond vs the olefin bond of cyclic peroxidesZvarec, O.; Avery, T.; Taylor, D.
2012Carbon dioxide capture in metal–organic frameworksSumida, K.; Rogow, D.L.; Mason, J.A.; McDonald, T.M.; Bloch, E.D.; Herm, Z.R.; Bae, T.-H.; Long, J.R.
2021Carbonisation of a polymer made from sulfur and canola oilMann, M.; Luo, X.; Tikoalu, A.D.; Gibson, C.T.; Yin, Y.; Al-Attabi, R.; Andersson, G.G.; Raston, C.L.; Henderson, L.C.; Pring, A.; Hasell, T.; Chalker, J.M.
1998Carbonyl substitution reactions of ruthenium cluster complexes containing dicarbon (C₂) ligands: X-ray structures of Ru₅(μ₅-C₂)(μ-SMe)₂(μ-PPh₂)₂(CO)₁₀(L) [L=CNBut, P(OMe)₃]Adams, C.; Bruce, M.; Skelton, B.; White, A.
1996Carbonyl-molybdenum complexes of the hydrotis(3,5-dimethyl-1,2,4-triazol-1-yl)borate ligand.Tiekink, Edward Richard Tom; Macleod, I. T.; Young, Charles G.
2016Carcinogenic chromium(VI) compounds formed by intracellular oxidation of chromium(III) dietary supplements by adipocytesWu, L.; Levina, A.; Harris, H.; Cai, Z.; Lai, B.; Vogt, S.; James, D.; Lay, P.
2016Carcinogenic chromium(VI) compounds formed by intracellular oxidation of chromium(III) dietary supplements by adipocytesWu, L.E.; Levina, A.; Harris, H.H.; Cai, Z.; Lai, B.; Vogt, S.; James, D.E.; Lay, P.A.
2005Casein proteins as molecular chaperonesMorgan, P.; Treweek, T.; Lindner, R.; Price, W.; Carver, J.