Matthys J. Janssen (1969). "Thiolo, Thiono and Dithio Acids and Esters". In Saul Patai (ed.). Carboxylic Acids and Esters. PATAI's Chemistry of Functional Groups. New York: John Wiley. p.705–764. doi:10.1002/9780470771099.ch15.
Fujiwara, S.; Kambe, N. (2005). "Thio-, Seleno-, and Telluro-Carboxylic Acid Esters". Topics in Current Chemistry. Vol.251. Berlin / Heidelberg: Springer. pp.87–140. doi:10.1007/b101007. ISBN978-3-540-23012-0.
Jordan, Andrew; Sneddon, Helen F. (2019). "Development of a solvent-reagent selection guide for the formation of thioesters". Green Chemistry. 21 (8): 1900–1906. doi:10.1039/C9GC00355J. S2CID107391323.
Dansette, P. M.; Rosi, J.; Debernardi, J.; Bertho, G.; Mansuy, D. (2012). "Metabolic Activation of Prasugrel: Nature of the Two Competitive Pathways Resulting in the Opening of Its Thiophene Ring". Chemical Research in Toxicology. 25 (5): 1058–1065. doi:10.1021/tx3000279. PMID22482514.
Newton, Josiah J.; Britton, Robert; Friesen, Chadron M. (4 October 2018). "Base-Catalyzed Transesterification of Thionoesters". The Journal of Organic Chemistry. 83 (20): 12784–12792. doi:10.1021/acs.joc.8b02260. PMID30235418. S2CID52309850.
Monteith, John J.; Scotchburn, Katerina; Mills, L. Reginald; Rousseaux, Sophie A. L. (2022). "Ni-Catalyzed Synthesis of Thiocarboxylic Acid Derivatives". Organic Letters. 24 (2): 619–624. doi:10.1021/acs.orglett.1c04074. PMID34978834. S2CID245669904.
Liu, Yinbo; Mo, Xiaofeng; Majeed, Irfan; Zhang, Mei; Wang, Hui; Zeng, Zhuo (2022). "An efficient and straightforward approach for accessing thionoesters via palladium-catalyzed C–N cleavage of thioamides". Organic & Biomolecular Chemistry. 20 (7): 1532–1537. doi:10.1039/d1ob02349g. ISSN1477-0520. PMID35129563. S2CID246418140.
Dansette, P. M.; Rosi, J.; Debernardi, J.; Bertho, G.; Mansuy, D. (2012). "Metabolic Activation of Prasugrel: Nature of the Two Competitive Pathways Resulting in the Opening of Its Thiophene Ring". Chemical Research in Toxicology. 25 (5): 1058–1065. doi:10.1021/tx3000279. PMID22482514.
Newton, Josiah J.; Britton, Robert; Friesen, Chadron M. (4 October 2018). "Base-Catalyzed Transesterification of Thionoesters". The Journal of Organic Chemistry. 83 (20): 12784–12792. doi:10.1021/acs.joc.8b02260. PMID30235418. S2CID52309850.
Monteith, John J.; Scotchburn, Katerina; Mills, L. Reginald; Rousseaux, Sophie A. L. (2022). "Ni-Catalyzed Synthesis of Thiocarboxylic Acid Derivatives". Organic Letters. 24 (2): 619–624. doi:10.1021/acs.orglett.1c04074. PMID34978834. S2CID245669904.
Liu, Yinbo; Mo, Xiaofeng; Majeed, Irfan; Zhang, Mei; Wang, Hui; Zeng, Zhuo (2022). "An efficient and straightforward approach for accessing thionoesters via palladium-catalyzed C–N cleavage of thioamides". Organic & Biomolecular Chemistry. 20 (7): 1532–1537. doi:10.1039/d1ob02349g. ISSN1477-0520. PMID35129563. S2CID246418140.
Jordan, Andrew; Sneddon, Helen F. (2019). "Development of a solvent-reagent selection guide for the formation of thioesters". Green Chemistry. 21 (8): 1900–1906. doi:10.1039/C9GC00355J. S2CID107391323.
Newton, Josiah J.; Britton, Robert; Friesen, Chadron M. (4 October 2018). "Base-Catalyzed Transesterification of Thionoesters". The Journal of Organic Chemistry. 83 (20): 12784–12792. doi:10.1021/acs.joc.8b02260. PMID30235418. S2CID52309850.
Monteith, John J.; Scotchburn, Katerina; Mills, L. Reginald; Rousseaux, Sophie A. L. (2022). "Ni-Catalyzed Synthesis of Thiocarboxylic Acid Derivatives". Organic Letters. 24 (2): 619–624. doi:10.1021/acs.orglett.1c04074. PMID34978834. S2CID245669904.
Liu, Yinbo; Mo, Xiaofeng; Majeed, Irfan; Zhang, Mei; Wang, Hui; Zeng, Zhuo (2022). "An efficient and straightforward approach for accessing thionoesters via palladium-catalyzed C–N cleavage of thioamides". Organic & Biomolecular Chemistry. 20 (7): 1532–1537. doi:10.1039/d1ob02349g. ISSN1477-0520. PMID35129563. S2CID246418140.