2022
DOI: 10.1002/ejic.202200402
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Titanium(IV) Alkoxide‐Carbamate Complexes: Synthesis and Catalytic Potential in H2O2‐Oxidation of Organic Sulfides

Abstract: Novel titanium alkoxide‐carbamate complexes, i. e. [Ti(OiPr)2(O2CNR2)2]m (R=Et, 1; R=iPr, 2; R=Bn=CH2Ph, 3), were synthesized in 87–94 % yields by using two distinct synthetic approaches, i. e. the reaction of [Ti(OiPr)4] with [Ti(O2CNR)4] (1 : 1 molar ratio) in dichloromethane solution, and the addition of [Ti(OiPr)4] to amine/CO2 mixture in toluene (amine/Ti ratio=2). The liquid products 1–3 were characterized by elemental analysis, IR and NMR spectroscopy, and the structure of 1 was optimized by DFT calcula… Show more

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Cited by 3 publications
(1 citation statement)
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“…Sulfolane (SL-A0), 1,1-dioxide-2,3-dihydro-thiophene (SL-B0), 3-sulfolene (SL-C0), and 1,1-dioxide-thiophene (SL-D0) are widely available compounds whose synthesis originates either from alkenes (with the insertion of SO 2 ) [43], from thiophenes (generally using H 2 O 2 as an oxidizer) [44][45][46], or by catalytic double bond migration procedures (with transition metal catalysts) [47,48]. Their fluorinated derivatives can therefore be synthesized in a similar way using fluorinated alkenes (SL-A2, SL-C2), thiophenes (SL-D1) [49], or fluorinated 1,1-dioxide-2,3-dihydro-thiophenes (SL-B1, SL-B2) as precursors.…”
Section: Synthesis Of the Proposed Compoundsmentioning
confidence: 99%
“…Sulfolane (SL-A0), 1,1-dioxide-2,3-dihydro-thiophene (SL-B0), 3-sulfolene (SL-C0), and 1,1-dioxide-thiophene (SL-D0) are widely available compounds whose synthesis originates either from alkenes (with the insertion of SO 2 ) [43], from thiophenes (generally using H 2 O 2 as an oxidizer) [44][45][46], or by catalytic double bond migration procedures (with transition metal catalysts) [47,48]. Their fluorinated derivatives can therefore be synthesized in a similar way using fluorinated alkenes (SL-A2, SL-C2), thiophenes (SL-D1) [49], or fluorinated 1,1-dioxide-2,3-dihydro-thiophenes (SL-B1, SL-B2) as precursors.…”
Section: Synthesis Of the Proposed Compoundsmentioning
confidence: 99%