Ung, Sosthène P.-M.; Li, Chao-Jun (2023). «From rocks to bioactive compounds: a journey through the global P( v) organophosphorus industry and its sustainability». RSC Sustainability1 (1): 11-37. doi:10.1039/D2SU00015F.
Wang, Xiaolei; Zhong, Wenjue; Xiao, Bowen; Liu, Qing; Yang, Liping; Covaci, Adrian; Zhu, Lingyan (1 de abril de 2019). «Bioavailability and biomagnification of organophosphate esters in the food web of Taihu Lake, China: Impacts of chemical properties and metabolism». Environment International(en inglés)125: 25-32. ISSN0160-4120. PMID30690428. doi:10.1016/j.envint.2019.01.018. hdl:10067/1585250151162165141.
Liu, Yaxin; Gong, Shuai; Ye, Langjie; Li, Jianhua; Liu, Chunsheng; Chen, Da; Fang, Mingliang; Letcher, Robert J. et al. (October 2021). «Organophosphate (OP) diesters and a review of sources, chemical properties, environmental occurrence, adverse effects, and future directions». Environment International155: 106691. doi:10.1016/j.envint.2021.106691.Se sugiere usar |número-autores= (ayuda)
Arora, Pinklesh; Singh, Rakhi; Seshadri, Geetha; Tyagi, Ajay Kumar (16 de julio de 2018). «Synthesis, Properties and Applications of Anionic Phosphate Ester Surfactants: A Review». Tenside Surfactants Detergents55 (4): 266-272. S2CID105424570. doi:10.3139/113.110570.
Tracy, David J.; Reierson, Robert L. (April 2002). «Commercial synthesis of monoalkyl phosphates». Journal of Surfactants and Detergents5 (2): 169-172. S2CID96234775. doi:10.1007/s11743-002-0218-9.
Liu, Runzeng; Mabury, Scott A. (19 de febrero de 2019). «Organophosphite Antioxidants in Indoor Dust Represent an Indirect Source of Organophosphate Esters». Environmental Science & Technology53 (4): 1805-1811. PMID30657667. S2CID58665691. doi:10.1021/acs.est.8b05545.
Bi, Ruifeng; Meng, Weikun; Su, Guanyong (July 2023). «Organophosphate esters (OPEs) in plastic food packaging: non-target recognition, and migration behavior assessment». Environment International177: 108010. PMID37307603. doi:10.1016/j.envint.2023.108010.
Gong, Xinying; Zhang, Wenjun; Zhang, Shuyi; Wang, Yu; Zhang, Xinyi; Lu, Yuan; Sun, Hongwen; Wang, Lei (1 de junio de 2021). «Organophosphite Antioxidants in Mulch Films Are Important Sources of Organophosphate Pollutants in Farmlands». Environmental Science & Technology55 (11): 7398-7406. doi:10.1021/acs.est.0c08741.
Richmond, Martha (2021). «Discovery and Commercial Introduction and Mode of Action of Parathion, Malathion, Diazinon, Tetrachlorvinphos, and Glyphosate». Cancer Hazards: Parathion, Malathion, Diazinon, Tetrachlorvinphos and Glyphosate. AESS Interdisciplinary Environmental Studies and Sciences Series. pp. 3-11. ISBN978-3-030-81952-1. doi:10.1007/978-3-030-81953-8_1.
O’Brien, R. D.; Thorn, G. D.; Fisher, R. W. (1 de octubre de 1958). «New Organophosphate Insecticides Developed on Rational Principles1». Journal of Economic Entomology51 (5): 714-718. doi:10.1093/jee/51.5.714.
Salgado, Vincent L; David, Michael D (April 2017). «Chance and design in proinsecticide discovery». Pest Management Science73 (4): 723-730. PMID27976502. doi:10.1002/ps.4502.
«The decomposition of some organophosphorus insecticides and related compounds in plants». Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences239 (663): 191-214. 22 de diciembre de 1955. S2CID84496732. doi:10.1098/rstb.1955.0009.
Spencer, E. Y.; O'Brien, R. D.; White, R. W. (February 1957). «Metabolism of Insecticides, Permanganate Oxidation Products of Schradan». Journal of Agricultural and Food Chemistry5 (2): 123-127. doi:10.1021/jf60072a004.
Metcalf, Robert L.; March, Ralph B. (1 de marzo de 1953). «Further Studies1 on the Mode of Action of Organic Thionophosphate Insecticides». Annals of the Entomological Society of America46 (1): 63-74. doi:10.1093/aesa/46.1.63.
Spencer, E. Y.; O'Brien, R. D. (August 1953). «Schradan, Enhancement of Anticholinesterase Activity in Octamethylpyrophosphoramide by Chlorine». Journal of Agricultural and Food Chemistry1 (11): 716-720. doi:10.1021/jf60011a003.
Mew, Emma J.; Padmanathan, Prianka; Konradsen, Flemming; Eddleston, Michael; Chang, Shu-Sen; Phillips, Michael R.; Gunnell, David (September 2017). «The global burden of fatal self-poisoning with pesticides 2006-15: Systematic review». Journal of Affective Disorders219: 93-104. PMID28535450. doi:10.1016/j.jad.2017.05.002. hdl:20.500.11820/0c890816-28a1-438e-8260-95dcd13ee57e.
Jokanović, Milan; Oleksak, Patrik; Kuca, Kamil (January 2023). «Multiple neurological effects associated with exposure to organophosphorus pesticides in man». Toxicology484: 153407. PMID36543276. S2CID254871617. doi:10.1016/j.tox.2022.153407.
Souza, Marília Cristina Oliveira; Cruz, Jonas Carneiro; Cesila, Cibele Aparecida; Gonzalez, Neus; Rocha, Bruno Alves; Adeyemi, Joseph A.; Nadal, Marti; Domingo, José L. et al. (July 2023). «Recent trends in pesticides in crops: A critical review of the duality of risks-benefits and the Brazilian legislation issue». Environmental Research228: 115811. PMID37030406. S2CID258033572. doi:10.1016/j.envres.2023.115811.Se sugiere usar |número-autores= (ayuda)
Pawlowski, Kristin H; Schartel, Bernhard (November 2007). «Flame retardancy mechanisms of triphenyl phosphate, resorcinol bis(diphenyl phosphate) and bisphenol A bis(diphenyl phosphate) in polycarbonate/acrylonitrile–butadiene–styrene blends». Polymer International56 (11): 1404-1414. doi:10.1002/pi.2290.
Barth, Mary L.; Craig, Peter H. (October 1999). «Evaluation of the hazards of industrial exposure to tricresyl phosphate:a review and interpretation of the literature». Journal of Toxicology and Environmental Health, Part B2 (4): 281-300. PMID10596299. doi:10.1080/109374099281142.
Truong, Jimmy W.; Diamond, Miriam L.; Helm, Paul A.; Jantunen, Liisa M. (December 2017). «Isomers of tris(chloropropyl) phosphate (TCPP) in technical mixtures and environmental samples». Analytical and Bioanalytical Chemistry409 (30): 6989-6997. PMID29147747. S2CID24611076. doi:10.1007/s00216-017-0572-7.
Amiri, Roshanak; Bissram, Meera J.; Hashemihedeshi, Mahin; Dorman, Frank L.; Megson, David; Jobst, Karl J. (5 de abril de 2023). «Differentiating Toxic and Nontoxic Tricresyl Phosphate Isomers Using Ion–Molecule Reactions with Oxygen». Journal of the American Society for Mass Spectrometry34 (4): 640-648. PMID36942790. S2CID257638565. doi:10.1021/jasms.2c00334.
Duarte, Daniel J.; Rutten, Joost M.M.; van den Berg, Martin; Westerink, Remco H.S. (March 2017). «In vitro neurotoxic hazard characterization of different tricresyl phosphate (TCP) isomers and mixtures». NeuroToxicology59: 222-230. PMID26851706. doi:10.1016/j.neuro.2016.02.001.
Wang, Xiaolei; Zhong, Wenjue; Xiao, Bowen; Liu, Qing; Yang, Liping; Covaci, Adrian; Zhu, Lingyan (1 de abril de 2019). «Bioavailability and biomagnification of organophosphate esters in the food web of Taihu Lake, China: Impacts of chemical properties and metabolism». Environment International(en inglés)125: 25-32. ISSN0160-4120. PMID30690428. doi:10.1016/j.envint.2019.01.018. hdl:10067/1585250151162165141.
Mew, Emma J.; Padmanathan, Prianka; Konradsen, Flemming; Eddleston, Michael; Chang, Shu-Sen; Phillips, Michael R.; Gunnell, David (September 2017). «The global burden of fatal self-poisoning with pesticides 2006-15: Systematic review». Journal of Affective Disorders219: 93-104. PMID28535450. doi:10.1016/j.jad.2017.05.002. hdl:20.500.11820/0c890816-28a1-438e-8260-95dcd13ee57e.
Wang, Xiaolei; Zhong, Wenjue; Xiao, Bowen; Liu, Qing; Yang, Liping; Covaci, Adrian; Zhu, Lingyan (1 de abril de 2019). «Bioavailability and biomagnification of organophosphate esters in the food web of Taihu Lake, China: Impacts of chemical properties and metabolism». Environment International(en inglés)125: 25-32. ISSN0160-4120. PMID30690428. doi:10.1016/j.envint.2019.01.018. hdl:10067/1585250151162165141.
Wang, Xiaolei; Zhong, Wenjue; Xiao, Bowen; Liu, Qing; Yang, Liping; Covaci, Adrian; Zhu, Lingyan (1 de abril de 2019). «Bioavailability and biomagnification of organophosphate esters in the food web of Taihu Lake, China: Impacts of chemical properties and metabolism». Environment International(en inglés)125: 25-32. ISSN0160-4120. PMID30690428. doi:10.1016/j.envint.2019.01.018. hdl:10067/1585250151162165141.
Liu, Runzeng; Mabury, Scott A. (19 de febrero de 2019). «Organophosphite Antioxidants in Indoor Dust Represent an Indirect Source of Organophosphate Esters». Environmental Science & Technology53 (4): 1805-1811. PMID30657667. S2CID58665691. doi:10.1021/acs.est.8b05545.
Bi, Ruifeng; Meng, Weikun; Su, Guanyong (July 2023). «Organophosphate esters (OPEs) in plastic food packaging: non-target recognition, and migration behavior assessment». Environment International177: 108010. PMID37307603. doi:10.1016/j.envint.2023.108010.
Salgado, Vincent L; David, Michael D (April 2017). «Chance and design in proinsecticide discovery». Pest Management Science73 (4): 723-730. PMID27976502. doi:10.1002/ps.4502.
Mew, Emma J.; Padmanathan, Prianka; Konradsen, Flemming; Eddleston, Michael; Chang, Shu-Sen; Phillips, Michael R.; Gunnell, David (September 2017). «The global burden of fatal self-poisoning with pesticides 2006-15: Systematic review». Journal of Affective Disorders219: 93-104. PMID28535450. doi:10.1016/j.jad.2017.05.002. hdl:20.500.11820/0c890816-28a1-438e-8260-95dcd13ee57e.
Jokanović, Milan; Oleksak, Patrik; Kuca, Kamil (January 2023). «Multiple neurological effects associated with exposure to organophosphorus pesticides in man». Toxicology484: 153407. PMID36543276. S2CID254871617. doi:10.1016/j.tox.2022.153407.
IARC Working Group on the Evaluation of Carcinogenic Risks to Humans (2017). «Some Organophosphate Insecticides and Herbicides». IARC Monographs on the Evaluation of Carcinogenic Risks to Humans. (International Agency for Research on Cancer) 12: 464. PMID31829533.
Souza, Marília Cristina Oliveira; Cruz, Jonas Carneiro; Cesila, Cibele Aparecida; Gonzalez, Neus; Rocha, Bruno Alves; Adeyemi, Joseph A.; Nadal, Marti; Domingo, José L. et al. (July 2023). «Recent trends in pesticides in crops: A critical review of the duality of risks-benefits and the Brazilian legislation issue». Environmental Research228: 115811. PMID37030406. S2CID258033572. doi:10.1016/j.envres.2023.115811.Se sugiere usar |número-autores= (ayuda)
Du, Jia; Li, Huanxuan; Xu, Shaodan; Zhou, Qingwei; Jin, Meiqing; Tang, Junhong (August 2019). «A review of organophosphorus flame retardants (OPFRs): occurrence, bioaccumulation, toxicity, and organism exposure». Environmental Science and Pollution Research26 (22): 22126-22136. PMID31243659. S2CID195694322. doi:10.1007/s11356-019-05669-y.
Barth, Mary L.; Craig, Peter H. (October 1999). «Evaluation of the hazards of industrial exposure to tricresyl phosphate:a review and interpretation of the literature». Journal of Toxicology and Environmental Health, Part B2 (4): 281-300. PMID10596299. doi:10.1080/109374099281142.
Truong, Jimmy W.; Diamond, Miriam L.; Helm, Paul A.; Jantunen, Liisa M. (December 2017). «Isomers of tris(chloropropyl) phosphate (TCPP) in technical mixtures and environmental samples». Analytical and Bioanalytical Chemistry409 (30): 6989-6997. PMID29147747. S2CID24611076. doi:10.1007/s00216-017-0572-7.
Amiri, Roshanak; Bissram, Meera J.; Hashemihedeshi, Mahin; Dorman, Frank L.; Megson, David; Jobst, Karl J. (5 de abril de 2023). «Differentiating Toxic and Nontoxic Tricresyl Phosphate Isomers Using Ion–Molecule Reactions with Oxygen». Journal of the American Society for Mass Spectrometry34 (4): 640-648. PMID36942790. S2CID257638565. doi:10.1021/jasms.2c00334.
Duarte, Daniel J.; Rutten, Joost M.M.; van den Berg, Martin; Westerink, Remco H.S. (March 2017). «In vitro neurotoxic hazard characterization of different tricresyl phosphate (TCP) isomers and mixtures». NeuroToxicology59: 222-230. PMID26851706. doi:10.1016/j.neuro.2016.02.001.
Arora, Pinklesh; Singh, Rakhi; Seshadri, Geetha; Tyagi, Ajay Kumar (16 de julio de 2018). «Synthesis, Properties and Applications of Anionic Phosphate Ester Surfactants: A Review». Tenside Surfactants Detergents55 (4): 266-272. S2CID105424570. doi:10.3139/113.110570.
Tracy, David J.; Reierson, Robert L. (April 2002). «Commercial synthesis of monoalkyl phosphates». Journal of Surfactants and Detergents5 (2): 169-172. S2CID96234775. doi:10.1007/s11743-002-0218-9.
Liu, Runzeng; Mabury, Scott A. (19 de febrero de 2019). «Organophosphite Antioxidants in Indoor Dust Represent an Indirect Source of Organophosphate Esters». Environmental Science & Technology53 (4): 1805-1811. PMID30657667. S2CID58665691. doi:10.1021/acs.est.8b05545.
«The decomposition of some organophosphorus insecticides and related compounds in plants». Philosophical Transactions of the Royal Society of London. Series B, Biological Sciences239 (663): 191-214. 22 de diciembre de 1955. S2CID84496732. doi:10.1098/rstb.1955.0009.
Jokanović, Milan; Oleksak, Patrik; Kuca, Kamil (January 2023). «Multiple neurological effects associated with exposure to organophosphorus pesticides in man». Toxicology484: 153407. PMID36543276. S2CID254871617. doi:10.1016/j.tox.2022.153407.
Souza, Marília Cristina Oliveira; Cruz, Jonas Carneiro; Cesila, Cibele Aparecida; Gonzalez, Neus; Rocha, Bruno Alves; Adeyemi, Joseph A.; Nadal, Marti; Domingo, José L. et al. (July 2023). «Recent trends in pesticides in crops: A critical review of the duality of risks-benefits and the Brazilian legislation issue». Environmental Research228: 115811. PMID37030406. S2CID258033572. doi:10.1016/j.envres.2023.115811.Se sugiere usar |número-autores= (ayuda)
Du, Jia; Li, Huanxuan; Xu, Shaodan; Zhou, Qingwei; Jin, Meiqing; Tang, Junhong (August 2019). «A review of organophosphorus flame retardants (OPFRs): occurrence, bioaccumulation, toxicity, and organism exposure». Environmental Science and Pollution Research26 (22): 22126-22136. PMID31243659. S2CID195694322. doi:10.1007/s11356-019-05669-y.
Truong, Jimmy W.; Diamond, Miriam L.; Helm, Paul A.; Jantunen, Liisa M. (December 2017). «Isomers of tris(chloropropyl) phosphate (TCPP) in technical mixtures and environmental samples». Analytical and Bioanalytical Chemistry409 (30): 6989-6997. PMID29147747. S2CID24611076. doi:10.1007/s00216-017-0572-7.
Amiri, Roshanak; Bissram, Meera J.; Hashemihedeshi, Mahin; Dorman, Frank L.; Megson, David; Jobst, Karl J. (5 de abril de 2023). «Differentiating Toxic and Nontoxic Tricresyl Phosphate Isomers Using Ion–Molecule Reactions with Oxygen». Journal of the American Society for Mass Spectrometry34 (4): 640-648. PMID36942790. S2CID257638565. doi:10.1021/jasms.2c00334.
unep.org
wedocs.unep.org
«Status and Trends of Pesticide Use». United Nations Environment Programme. World Health Organization, & Food and Agriculture Organization of the United Nations. 2022.