^David R. Lide (Hrsg.): CRC Handbook of Chemistry and Physics. 90. Auflage. (Internet Version: 2010), CRC Press/Taylor and Francis, Boca Raton, FL, Structure of Free Molecules in the Gas Phase, S. 9-46.
^E. D. Matveeva et al., Regioselective and stereoselective substitution of hydroxyl group for halogen in allyl alcohols, Zh. Org. Khim., 31, (8), 1121–1125 (1995).
^D. O. Jang et al., A mild and efficient procedure for the preparation of acid chlorides from carboxylic acids, Tetrahedron Lett., 40, (29), 5323–5326 (1999).
^J. Vago, J. Greiner, A useful acylation method using trichloroacetonitrile and triphenylphosphine for solid phase organic synthesis, Tetrahedron Lett., 43, (34), 6039–6041 (2002).
^O. Chantarasriwong et al., A practical and efficient method for the preparation of sulfonamides utilizing Cl3CCN/PPh3, Tetrahedron Lett., 47, (42), 7489–7492 (2006).
^A. Kasemsuknimit et al., Efficient amidation and esterification of phosphoric acid using Cl3CCN/Ph3P, Bull. Korean Chem. Soc., 32, (9), 3486–3488 (2011).
^W. Kijrungphaiboon et al., Cl3CCN/PPh3 and CBr4/PPh3: two efficient reagent systems for the preparation of N-heteroaromatic halides, Tetrahedron Lett., 53, 674–677 (2006).
^Grivas, John C.; Taurins, Alfred (1958-05-01). “Reaction of trichloroacetonitrile with primary and secondary amines: part i. preparation of some trichloroacetamidines”. Canadian Journal of Chemistry36 (5): 771–774. doi:10.1139/v58-113. ISSN0008-4042.
^T. Nishikawa; M. Asai; N. Ohyabu; M. Isobe (1998). “Improved Conditions for Facile Overman Rearrangement(1)”. J. Org. Chem.63 (1): 188–192. doi:10.1021/jo9713924. PMID11674062.
^“Overman Rearrangement”. Organic Chemistry Portal. organic-chemistry.org. November 15, 2012閲覧。
^Y. K. Chen. A. E. Lurain, P. J. Walsh (2002). “A general, highly enantioselective method for the synthesis of D and L alpha-amino acids and allylic amines”. J. Am. Chem. Soc.124 (41): 12225–12231. doi:10.1021/ja027271p. PMID12371863.
^Schaefer, Fred C.; Peters, Grace A. (1961). “Base-Catalyzed Reaction of Nitriles with Alcohols. A Convenient Route to Imidates and Amidine Salts”. The Journal of Organic Chemistry26 (2): 412–418. doi:10.1021/jo01061a034.
^E. P. Eckenberg et al., A useful application of benzyl trichloroacetimidate for the benzylation of alcohols, Tetrahedron, 49, 1619–1624 (1993).
^R. R. Schmidt, J. Michel, Einfache Synthese von α- und β-O-Glycosylimidaten. Herstellung von Glykosiden und Disacchariden, Angew. Chem., 92, 763–764 (1980).
^R. R. Schmidt, Neue Methoden zur Glycosid- und Oligosaccharidsynthese – gibt es Alternativen zur Koenigs-Knorr-Methode?, Angew. Chem. 98, 213–236 (1986)
^R. R. Schmidt, W. Kinzy, Anomeric-oxygen activation for glycoside synthesis – the trichloroacetimidate method, Adv. Carbohydr. Chem. Biochem., 50, 21–123 (1994).
^R. R. Schmidt, K.-H. Jung, Oligosaccharide synthesis with trichloroacetimidates, In: Preparative Carbohydrate Chemistry, S. Hanessian, Ed., Marcel Dekker, New York, 283–312 (1997), ISBN0-8247-9802-3.
^F. J. Urban et al., Tetrahedron Lett., 31, 4421–4424 (1990)
^V. J. Patil, Tetrahedron Lett., 37, 1481–1484 (1996).
^A. Jegorov et al., 1-Thio-β-D-galactose as a chiral derivatization agent for the resolution of D,L-aminoacid enantiomers, J. Chromatogr. A, 673(2), 286–290 (1994).
^N. M. Sax, R. J. Lewis, Hawley's Condensed Chemical Dictionary, 11th ed., Van Nostrand Reinhold, New York, S. 261, 1175 (1987).