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(c) Barr, L.; Dumanski, P.G.; Easton, C. J.; Harper, J. B.; Lee, K.; Lincoln, S. F.; Meyer, A. G.; Simpson, J. S. Cyclodextrin molecular reactors. J. Inclusion Phenom. Macrocycl. Chem., 2004, 50, 19;
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Easton, C.J.1
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Selected references: (a) Wenz, G.; Han, B.-H.; Muller, A. Cyclodextrin rotaxanes and polyrotaxanes. Chem. Rev., 2006, 106, 782-817.
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Selected references: (a) Wenz, G.; Han, B.-H.; Muller, A. Cyclodextrin rotaxanes and polyrotaxanes. Chem. Rev., 2006, 106, 782-817.
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7
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0347086158
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Installation of a ratchet tooth and pawl to restrict rotation in a cyclodextrin rotaxane
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(c) Onagi, H.; Carrozzini, B.; Cascarano, G. L.; Easton, C. J.; Edwards, A. J.; Lincoln, S. F.; Rae, A. D. Installation of a ratchet tooth and pawl to restrict rotation in a cyclodextrin rotaxane. Chem. Eur. J., 2003, 9, 5971-5977.
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Chem. Eur. J
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Onagi, H.1
Carrozzini, B.2
Cascarano, G.L.3
Easton, C.J.4
Edwards, A.J.5
Lincoln, S.F.6
Rae, A.D.7
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8
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33748471117
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Centrosymmetric and non-centrosymmetric packing of aligned molecular fibres in the solid state self assemblies of cyclodextrin-based rotaxanes
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(d) Cieslinski, M. M.; Steel, P. J.; Lincoln, S. F.; Easton, C. J. Centrosymmetric and non-centrosymmetric packing of aligned molecular fibres in the solid state self assemblies of cyclodextrin-based rotaxanes. Supramol. Chem., 2006, 18, 529-536.
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Cieslinski, M.M.1
Steel, P.J.2
Lincoln, S.F.3
Easton, C.J.4
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9
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1642580700
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Synthesis of poly(para-phenylenevinylene) rotaxanes by aqueous Suzuki coupling
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(e) Terao, J.; Tang, A.; Michels, J. J.; Krivokapic, A.; Anderson, H. L. Synthesis of poly(para-phenylenevinylene) rotaxanes by aqueous Suzuki coupling. Chem. Commun., 2004, 56-57.
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Terao, J.1
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Michels, J.J.3
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10
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85197356023
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Selected reviews: (a) Li, C.-J. Organic chemistry in water. Chem. Rev., 2005, 105, 3095;
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Selected reviews: (a) Li, C.-J. Organic chemistry in water. Chem. Rev., 2005, 105, 3095;
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(b) Sheldon, R. A. Green solvents for sustainable organic synthesis: state of the art. Green Chem., 2005, 7, 267.
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(c) Li, C.-J.; Chen, L. Organic chemistry in water. Chem. Soc. Rev., 2006, 35, 68.
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(d) Perchyonok, V.T.; Lykakis, I.N.; Tuck, K.L. Green Chem., 2008, 10, 153-163
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Perchyonok, V.T.1
Lykakis, I.N.2
Tuck, K.L.3
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Renaud, P, Sibi, M. P, Eds. Wiley-VCH: Weinheim
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(a) Radicals in Organic Synthesis,; Renaud, P.; Sibi, M. P., Eds. Wiley-VCH: Weinheim, 2001, Vol. 1
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85197336823
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3 SiH. Org. Lett., 2007, 9(25), 5159-5162.
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3 SiH. Org. Lett., 2007, 9(25), 5159-5162.
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18
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0037414324
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Model Studies of DNA C5′ Radicals. Selective Generation and Reactivity of 2′-Deoxyadenosin-5′-yl Radical
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(d) Chatgilialoglu, C.; Guerra, M.; Mulazzani, Q. G. Model Studies of DNA C5′ Radicals. Selective Generation and Reactivity of 2′-Deoxyadenosin-5′-yl Radical. J. Am. Chem. Soc., 2003, 125, 3839.
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19
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Solar one-way photoisomerisation of 5,8-cyclo-2-deoxyadenosine
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(e) Jimenez, L. B.; Encinas, S.; Miranda, M. A.; Navacchia, M. L.; Chatgilialoglu, C. Solar one-way photoisomerisation of 5,8-cyclo-2-deoxyadenosine. Photochem. Photobiol. Sci., 2004, 3, 1042.
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(f) Chatgilialoglu, C.; Ferreri, C. Geometrical trans Lipid Isomers: A New Target for Lipidomics. Acc. Chem. Res., 2005, 38, 441.
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Photochemical approach to probing different DNA structures
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(j). Sugiyama, H.; Xu, Y. Photochemical approach to probing different DNA structures. Angew. Chem. Int. Ed., 2006, 45, 135.
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Selected references on the use of organic hypophosphites as hydrogen donors in organic solvents: (a). Brigas, A. F.; Johnstone, R. A. W. J. Chem. Soc. Chem. Commun., 1991, 1041-1042,
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Selected references on the use of organic hypophosphites as hydrogen donors in organic solvents: (a). Brigas, A. F.; Johnstone, R. A. W. J. Chem. Soc. Chem. Commun., 1991, 1041-1042,
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Hypophosphite mediated carbon-carbon bond formation: Total synthesis of epialboatrin and structural revision of alboatrin
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(b). Graham, S. R.; Murphy, J. A.; Kennedy, A. R. Hypophosphite mediated carbon-carbon bond formation: total synthesis of epialboatrin and structural revision of alboatrin. J. Chem. Soc. Perkin Trans. 1, 1999, 3071.
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Replacing tin in radical chemistry: N-ethylpiperidine hypophosphite in cyclisation reactions of aryl radicals
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(c). Martin, C. G.; Murphy, J. A.; Smith, C. R. Replacing tin in radical chemistry: N-ethylpiperidine hypophosphite in cyclisation reactions of aryl radicals. Tetrahedron Lett., 2000, 41, 1833-1836.
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On the scope of radical reactions in aqueous media utilizing quaternary ammonium salts of phosphinic acids as chiral and achiral hydrogen donors
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(d). Perchyonok, V. T.; Tuck, K. L.; Langford, S. J.; Hearn, M. W. On the scope of radical reactions in aqueous media utilizing quaternary ammonium salts of phosphinic acids as chiral and achiral hydrogen donors. Tetrahedron Lett., 2008, 49, 4777-4779.
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33845244853
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Enantioselective radical addition reactions to the CN bond utilizing chiral quaternary ammonium salts of hypophosphorous acid in aqueous media
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Cho, D.H.; Jang, D.O. Enantioselective radical addition reactions to the CN bond utilizing chiral quaternary ammonium salts of hypophosphorous acid in aqueous media. Chem. Commun., 2006, 9, 5045.
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Stereoselective organic reactions in water
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(a). Lindstrom, U. M. Stereoselective organic reactions in water. Chem. Rev., 2002, 102, 2751.
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Lindstrom, U.M.1
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. Selected publications for enatioselectivity in free radical transformations in the organic solvents: Dakternieks, D.; Perchyonok, V.T.; Schiesser, C. H. Single enantiomer free-radical chemistry - Lewis acid-mediated reductions of racemic halides using chiral non-racemic stannanes. Tetrahedron Asymmetry, 2003, 14, 3057-3068,
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(b). Selected publications for enatioselectivity in free radical transformations in the organic solvents: Dakternieks, D.; Perchyonok, V.T.; Schiesser, C. H. Single enantiomer free-radical chemistry - Lewis acid-mediated reductions of racemic halides using chiral non-racemic stannanes. Tetrahedron Asymmetry, 2003, 14, 3057-3068,
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Enantioselective H-atom transfer reactions. synthesis of β-Amino acids
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and references cited therein
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(b) Sibi, M. P.; Patil, K. Enantioselective H-atom transfer reactions. synthesis of β-Amino acids. Angew. Chem. Int. Ed., 2004, 43, 1235 and references cited therein.
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Sibi, M.P.1
Patil, K.2
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85197353441
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Selected publications on the application of radical cascade reactions in total synthesis: (a) Myers, A. G.; Condronski, K. R. Synthesis of (±)-7,8-Epoxy-4-basmen-6-one by a transannular cyclization strategy. J. Am. Chem. Soc., 1993, 115, 7926;
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Selected publications on the application of radical cascade reactions in total synthesis: (a) Myers, A. G.; Condronski, K. R. Synthesis of (±)-7,8-Epoxy-4-basmen-6-one by a transannular cyclization strategy. J. Am. Chem. Soc., 1993, 115, 7926;
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