Tunable regioselectivity in 1,3-butadiene polymerization by using 2,6-bis(dimethyl-2-oxazolin-2-yl)pyridine incorporated transition metal (Cr, Fe and Co) catalysts
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Type
ArticleKAUST Department
Chemical Science ProgramHomogeneous Catalysis Laboratory (HCL)
KAUST Catalysis Center (KCC)
Physical Science and Engineering (PSE) Division
Date
2015-05-21Online Publication Date
2015-05-21Print Publication Date
2015-09Permanent link to this record
http://hdl.handle.net/10754/555759
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Tridentate complexes Cr(III)Cl3L, [L = 2,6-bis(dimethyl-2-oxazolin-2-yl) pyridine], Fe(III)Cl3L, Fe(II)Cl2L and Co(II)Cl2L have been prepared and fully characterized. The solid structures of Cr(III)Cl3L, Fe(III)Cl3L and Co(II)Cl2L have been revealed by single crystal X-ray diffraction, and the Cr(III)Cl3L and Fe(III)Cl3L complexes both exhibit a distorted octahedral geometry, while the Co(II)Cl2L complex has a trigonal bipyramidal conformation. Four complexes have been examined in regioselective polymerization of butadiene in combination with MAO in toluene at room temperature. The trans-1,4, cis-1,4 enchainment of resultant polybutadiene are controlled by the metal center. Activated by MAO, complex Cr(III)Cl3L produces high level of trans-1,4 selectivity (trans-1,4 up to 93.3%) with moderate polymer yield, complexes Fe(III)Cl3L and Fe(II)Cl2L both show equal cis-1,4 and trans-1,4 with minor 1,2 selectivity (<10%), and Co(II)Cl2L catalyst displays predominated cis-1,4 selectivity, which can be shifted to 1,2 selectivity by adding PPh3 as an additive. Thus, tuning of the cis-1,4, trans-1,4 and 1,2 selectivity in full range via central metal and additive chosen by these 2,6-bis(dimethyl-2-oxazolin-2-yl) pyridine supported catalysts has been achieved. © 2015 Elsevier B.V. All rights reserved.Citation
Tunable regioselectivity in 1,3-butadiene polymerization by using 2,6-bis(dimethyl-2-oxazolin-2-yl)pyridine incorporated transition metal (Cr, Fe and Co) catalysts 2015 Journal of Molecular Catalysis A: ChemicalPublisher
Elsevier BVAdditional Links
http://linkinghub.elsevier.com/retrieve/pii/S1381116915001867Relations
Is Supplemented By:- [Dataset]
Gong, D., Liu, W., Pan, W., Chen, T., Jia, X., Huang, K.-W., & Zhang, X. (2016). CCDC 1005506: Experimental Crystal Structure Determination [Data set]. Cambridge Crystallographic Data Centre. https://doi.org/10.5517/cc12r9pt. DOI: 10.5517/cc12r9pt HANDLE: 10754/624327 - [Dataset]
Gong, D., Liu, W., Pan, W., Chen, T., Jia, X., Huang, K.-W., & Zhang, X. (2016). CCDC 1005507: Experimental Crystal Structure Determination [Data set]. Cambridge Crystallographic Data Centre. https://doi.org/10.5517/cc12r9qv. DOI: 10.5517/cc12r9qv HANDLE: 10754/624328 - [Dataset]
Gong, D., Liu, W., Pan, W., Chen, T., Jia, X., Huang, K.-W., & Zhang, X. (2016). CCDC 1005508: Experimental Crystal Structure Determination [Data set]. Cambridge Crystallographic Data Centre. https://doi.org/10.5517/cc12r9rw. DOI: 10.5517/cc12r9rw HANDLE: 10754/624329
ae974a485f413a2113503eed53cd6c53
10.1016/j.molcata.2015.05.013