SIGMA-THIENYL COMPLEXES OF PALLADIUM(II), TRANS-PDBR(C4H4-NBRN-1S-C)(PPH3)(2) (N=1-4) FROM OXIDATIVE ADDITION OF BROMOTHIOPHENES TO PD(PPH3)(4) - X-RAY STRUCTURAL IDENTIFICATION OF KEY INTERMEDIATES OF CATALYTIC DEBROMINATION OF 2-BROMOTHIOPHENE AND TETRABROMOTHIOPHENE
Y. Xie et al., SIGMA-THIENYL COMPLEXES OF PALLADIUM(II), TRANS-PDBR(C4H4-NBRN-1S-C)(PPH3)(2) (N=1-4) FROM OXIDATIVE ADDITION OF BROMOTHIOPHENES TO PD(PPH3)(4) - X-RAY STRUCTURAL IDENTIFICATION OF KEY INTERMEDIATES OF CATALYTIC DEBROMINATION OF 2-BROMOTHIOPHENE AND TETRABROMOTHIOPHENE, Journal of organometallic chemistry, 531(1-2), 1997, pp. 175-181
Oxidative addition reactions of Pd(PPh3)(4) with bromothiophenes C4H(4
-n)Br(n)S (n=1-4) occur readily at RT to give sigma-thienyl complexes
trans-PdBr(C4H4-nBrn-1S-C)(PPh3)(2) in yields greater than or equal to
85%. The products are intermediates in the regioselective reduction o
f bromothiophenes catalyzed by Pd(O). Palladation invariably occurs at
the carbon adjacent to the thienyl sulfur. Single crystal X-ray cryst
allographic determination was carried out on PdBr(2-thienyl)(PPh3)(2),
1, and PdBr(3,4,5-tribromo-2-thienyl)(PPh3)(2), 6. Crystal data for 1
: space group Pbcn, a = 19.354(1), b = 10.760(1), c = 16.451(1)Angstro
m, Z = 4, 3106 reflections, R = 0.0614; for 6: space group P2(1)/n, a
= 11.361(2), b = 13.049(3), c = 26.670(5)Angstrom, beta = 102.00(3)deg
rees, Z = 4, 3577 reflections, R = 0.0375. Reduction of PdBr(3,4-dibro
mo-2-thienyl)(PPh3)(2),5, by NaBH4 gives 2,3-dibromothiophene.