Kinetic Evidence for Homogeneous Catalysis Mechanism in the Oxidative Mizoroki–Heck Reaction
- Authors: Kurokhtina A.A.1, Larina E.V.1, Lagoda N.A.1, Schmidt A.F.1
- 
							Affiliations: 
							- Irkutsk State University
 
- Issue: Vol 65, No 6 (2024)
- Pages: 637-645
- Section: ОБЗОРЫ
- URL: https://cardiosomatics.ru/0453-8811/article/view/684774
- DOI: https://doi.org/10.31857/S0453881124060049
- EDN: https://elibrary.ru/QKLGDV
- ID: 684774
Cite item
Abstract
The paper presents the results of the study of the differential selectivity patterns in the oxidative Mizoroki–Heck reaction under competition of two alkenes or of two arylboronic acids. It has been demonstrated that the loading and nature (soluble under the reaction conditions or insoluble deposited on a heterogeneous support) of the Pd catalyst precursor does not affect the differential selectivity of the products of competing reactions. The results obtained indicate that the nature of the catalytically active species remains unchanged when the nature and loading of the precursor is varied. In accordance with accepted view about the interconversions of dissolved and solid forms of palladium in cross-coupling reactions, such species are truly dissolved molecular Pd complexes.
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	                        About the authors
A. A. Kurokhtina
Irkutsk State University
														Email: aschmidt@chem.isu.ru
				                					                																			                								
Chemical Department
Russian Federation, K. Marx str., 1, Irkutsk, 664003E. V. Larina
Irkutsk State University
														Email: aschmidt@chem.isu.ru
				                					                																			                								
Chemical Department
Russian Federation, K. Marx str., 1, Irkutsk, 664003N. A. Lagoda
Irkutsk State University
														Email: aschmidt@chem.isu.ru
				                					                																			                								
Chemical Department
Russian Federation, K. Marx str., 1, Irkutsk, 664003A. F. Schmidt
Irkutsk State University
							Author for correspondence.
							Email: aschmidt@chem.isu.ru
				                					                																			                								
Chemical Department
Russian Federation, K. Marx str., 1, Irkutsk, 664003References
- Heck R.F., Nolley J.P. // J. Org. Chem. 1972. V. 37. P. 2320.
- Zhang X.-S., Han Y.-P., Zhang Y., Liang Y.-M. // Adv. Synth. Catal. 2023. V. 365. P. 2436.
- Alisha M., Philip R.M., Anilkumar G. // J. Organomet. Chem. 2022. V. 959. Art. 122207.
- Le Bras J., Muzart J. // Chem. Rev. 2011. V. 111. P. 1170.
- Cirillo D., Karlsson S., Bjørsvik H. // Eur. J. Org. Chem. 2021. V. 40. P. 5519.
- Motevalizadeh S.F., Alipour M., Ashori F., Samzadeh-Kermani A., Hamadi H., Ganjali M.R., Aghahosseini H., Ramazani A., Khoobi M., Gholibegloo E. // Appl. Organomet. Chem. 2018. V. 32. P. e4123.
- Odell L.R., Sävmarker J., Lindh J., Nilsson P., Larhed M. Addition Reactions with Formation of Carbon-Carbon Bonds: (V) The Oxidative Heck Reaction / In: Comprehensive Organic Synthesis: Second Edition, Ed. P. Knochel. Elsevier Ltd., 2014. P. 492.
- Karimi B., Behzadnia H., Elhamifar D., Akhavan P.F., Esfahani F.K., Zamani A. // Synthesis. 2010. № 9. P. 1399.
- Lee A.-L. // Org. Biomol. Chem. 2016. V. 14. P. 5357.
- Mi X., Huang M., Guo H., Wu Y. // Tetrahedron. 2013. V. 69. P. 5123.
- Zhou C., Larock R.C. // J. Org. Chem. 2006. V. 71. P. 3184.
- Ourailidou M.E., Van Der Meer J.Y., Baas B.J., Jeronimus-Stratingh M., Gottumukkala A.L., Poelarends G.J., Minnaard A.J., Dekker F.J. // ChemBioChem. 2014. V. 15. P. 209.
- Delcamp J.H., Gormisky P.E., White M.C. // J. Am. Chem. Soc. 2013. V. 135. P. 8460.
- Han J., Sun X., Wang X., Wang Q., Hou S., Song X., Wei Y., Wang R., Ji W. // Org. Lett. 2020. V. 22. P. 1480.
- Li Y., Sun N., Hao M., Zhang C.L., Li H., Zhu W.Q. // Catal. Lett. 2021. V. 151. P. 764.
- Silarska E., Trzeciak A.M. // J. Mol. Catal. A: Chem. 2015. V. 408. P. 1.
- Шмидт А.Ф., Курохтина А.А., Ларина Е.В. // Кинетика и катализ. 2019. Т. 60. № 5. С. 555. (Schmidt A.F., Kurokhtina A.A., Larina E.V. // Kinet. Catal. 2019. V. 60. P. 551.)
- Ларина Е.В., Курохтина А.А., Лагода Н.А., Григорьева Т.А., Шмидт А.Ф. // Кинетика и катализ. 2023. Т. 64. № 4. С. 428. (Larina E.V., Kurokhtina A.A., Lagoda N.A., Grigoryeva T.A., Schmidt A.F. // Kinet. Catal. 2023. V. 64. P. 431.)
- Шмидт А.Ф., Курохтина А.А., Ларина Е.В., Лагода Н.А., Явсин Д.А., Гуревич С.А., Зеликман В.М., Кротова И.Н., Ростовщикова Т.Н., Тарханова И.Г. // Кинетика и Катализ. Т. 64. № 1. С. 39. (Schmidt A.F., Kurokhtina A.A., Larina E.V., Lagoda N.A., Yavsin D.A., Gurevich S.A., Zelikman V.M., Krotova I.N., Rostovshchikova T.N., Tarkhanova I.G. // Kinet. Catal. 2023. V. 64. № 1. P. 32.)
- Schmidt A.F., Kurokhtina A.A., Larina E.V., Lagoda N.A. // Organometallics. 2024. V. 43. P. 1879.
- Lagoda N.A., Larina E.V., Vidyaeva E.V., Kurokhtina A.A., Schmidt A.F. // Org. Proc. Res. Dev. 2021. V. 25. P. 916.
- Excel for Scientists and Engineers: Numerical Methods. 2nd Ed. E.J. Billo. John Wiley & Sons, 2007. 480 р.
- Мироненко Р.М., Бельская О.Б., Лихолобов В.А. // Российский химический журнал. 2019. T. 62. № 1–2. С. 141. (Mironenko R.M., Belskaya O.B., Likholobov V.A. // Rus. J. Gen. Chem. 2020. V. 90. P. 532.)
- Biffis A., Centomo P., Del Zotto A., Zecca M. // Chem. Rev. 2018. V. 118. P. 2249.
- Jeddi N., Scott N.W.J., Fairlamb I.J.S. // ACS Catal. 2022. V. 12. Р. 11615.
- Шмидт А.Ф., Курохтина А.А. // Кинетика и катализ. 2012. Т. 53. № 6. С. 760. (Schmidt A.F., Kurokhtina A.A. // Kinet. Catal. 2012. V. 53. P. 714.)
- Ananikov V.P., Beletskaya I.P. // Organometallics, 2012, 31, 1595.
- Prima D.O., Kulikovskaya N.S., Galushko A.S., Mironenko R.M., Ananikov V.P. // Curr. Opin. Green Sustain. Chem. 2021. V. 31. P. 100502
- Widegren J.A., Finke R.G. // J. Mol. Catal. A: Chem. 2003. V. 198. P. 317.
- Crabtree R.H. // Chem. Rev. 2012. V. 112. P. 1536.
- Gorunova O.N., Novitskiy I.M., Grishin Y.K., Gloriozov I.P., Roznyatovsky V.A., Khrustalev V.N., Kochetkov K.A., Dunina V.V. // Organometallics. 2018. V. 37. P. 2842.
- Chernyshev V.M., Astakhov A.V., Chikunov I.E., Tyurin R.V., Eremin D.B., Ranny G.S., Khrustalev V.N., Ananikov V.P. // ACS Catal. 2019. V. 9. P. 2984.
- Chagunda I.C., Fisher T., Schierling M., McIndoe J.S. // Organometallics. 2023. V. 42. P. 2938.
- Schmidt A.F., Kurokhtina A.A., Larina E.V. // Catal. Sci. Technol. 2014. V. 4. P. 3439.
- Köhler K., Kleist W., Pröckl S.S. // Inorg. Chem. 2007. V. 46. P. 1876.
- Galushko A.S., Ilyushenkova V.V., Burykina J.V., Shaydullin R.R., Pentsak E.O., Ananikov V.P. // Inorganics. 2023. V. 11. P. 260.
- Gnad C., Abram A., Urstöger A., Weigl F., Schuster M., Köhler K. // ACS Catal. 2020. V. 10. P. 6030.
- Handwerk D.R., Shipman P.D., Whitehead C.B., Özkar S., Finke R.G. // J. Phys. Chem. C. 2020. V. 124. P. 4852.
- Finney E.E., Finke R.G. // J. Coll. Interf. Sci. 2008. V. 317. P. 351.
- Schmidt A.F., Smirnov V.V. // Top. Catal. 2005. V. 32. P. 71.
- Темкин О.Н. // Кинетика и катализ. 2012. Т. 53. С. 326. (Temkin O.N. // Kinet. Catal. 2012. V. 53. P. 313.)
- Polynski M.V., Ananikov V.P. // ACS Catal. 2019. V. 9. Art. 3991.
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