83622-49-5Relevant academic research and scientific papers
Iron-Catalyzed Regiodivergent Hydrostannation of Alkynes: Intermediacy of Fe(IV)-H versus Fe(II)-Vinylidene
Liu, Jianguo,Song, Heng,Wang, Tianlin,Jia, Jiong,Tong, Qing-Xiao,Tung, Chen-Ho,Wang, Wenguang
supporting information, p. 409 - 419 (2021/01/12)
We report an iron system, Cp*Fe(1,2-R2PC6H4X), which controls the Markovnikov and anti-Markovnikov hydrostannation of alkynes by tuning the ionic metal-heteroatom bonds (Fe-X) reactivity. The sequential addition of nBu3SnH to the iron-amido catalyst (1, X = HN-, R = Ph) affords a distannyl Fe(IV)-H species responsible for syn-addition of the Sn-H bond across the CC bond to produce branched α-vinylstannanes. Activation of the C(sp)-H bond of alkynes by an iron-aryloxide catalyst (2, X = O-, R = Cy) affords an iron(II) vinylidene intermediate, allowing for gem-addition of the Sn-H to the terminal-carbon producing β-vinylstannanes. These catalytic reactions exhibit excellent regioselectivity and broad functional group compatibility and enable the large-scale synthesis of diverse vinylstannanes. Many new reactions have been established based on such a synthetic Fe-X platform to demonstrate that the initial step of the catalysis is conveniently controlled by the activation of either the tin hydride or the alkyne substrate.
METHOD FOR PRODUCING 14 GROUP METAL LITHIUM COMPOUND
-
, (2016/10/31)
PROBLEM TO BE SOLVED: To provide a method for quantitatively producing a group 14 metal lithium compound under a mild condition. SOLUTION: The method for producing a group 14 metal lithium compound represented by formula (4): R4-nMLin comprises reacting a compound represented by formula (1): R4-nMXn and lithium in the presence of a polycyclic aromatic compound represented by formula (2) or formula (3). [In formula (1) and formula (2), R is a hydrocarbon group; M is a metal atom selected from Si, Ge and Sn; X is a halogen atom or R3M- (R and M are the same as mentioned above); and n is 1 or 2] and [R1 is H or a hydrocarbon group; and m is an integer of 0 to 5.] SELECTED DRAWING: None COPYRIGHT: (C)2016,JPOandINPIT
REGIO- AND STREREO-SELECTIVE SYNTHESIS OF VINYLSTANNANES. TRANSITION-METAL CATALYZED STANNYLMETALATION OF ACETYLENES AND CONVERSION OF ENOL TRIFLATES AND VINYL IODIDES INTO VINYLSTANNANES
Matsubara, Seijiro,Hibino, Jun-Ichi,Morizawa, Yoshitomi,Oshima, Koichiro,Nozaki, Hitosi
, p. 163 - 172 (2007/10/02)
Two new methods for the regio- and strereo-selective synthesis of vinylstannanes are described. (i) The reaction of terminal acetylenes with n-Bu3SnMgMe, n-Bu3SnAlEt2, or (n-Bu3Sn)2Zn in the presence of various transition-metal catalysts provides vinylstannanes in good yields.Whereas copper-catalyzed stannylmagnesation of 4-benzyloxy-1-butyne gives (E)-4-benzyloxy-1-tributylstannyl-1-butene exclusively, palladium-catalyzed stannylzincation affords 4-benzyloxy-2-tributylstannyl-1-butene preferentially. (ii) Treatment of enol triflates or vinyl iodide with Me3Sn-MgMe in the presence of CuCN catalyst gives vinylstannanes in good yields.
