SYNTHESIS AND CHARACTERIZATION OF WATER-SOLUBLE 1,2-BIS(BIS(HYDROXYALKYL)PHOSPHINO)ETHANE LIGANDS AND THEIR NICKEL(II), RUTHENIUM(III), ANDRHODIUM(I) COMPLEXES
Gt. Baxley et al., SYNTHESIS AND CHARACTERIZATION OF WATER-SOLUBLE 1,2-BIS(BIS(HYDROXYALKYL)PHOSPHINO)ETHANE LIGANDS AND THEIR NICKEL(II), RUTHENIUM(III), ANDRHODIUM(I) COMPLEXES, Inorganic chemistry, 35(23), 1996, pp. 6688-6693
The syntheses of the water-soluble, chelating phosphines 1,2-bis(bis(h
ydroxybutyl)phosphino)ethane (1, n = 3; DHBuPE) and 1,2-bis(bis(hydrox
ypentyl)phosphino)ethane (1, n = 4; DHPePE) are reported. These ligand
s (and, in general, other 1,2-bis(bis(hydroxyalkyl)phosphino)ethane li
gands) can be used to impart water solubility to metal complexes. As e
xamples of this, the [Ni(DHPrPE)(2)Cl]Cl (2), [Rh(DHPrPE)(2)][Cl] (3),
and [Ru-(DHBuPE)(2)Cl-2][Cl] (4) complexes were synthesized; they are
indeed soluble in water (>0.5 M). Crystals of DHPrPE (1, n = 2) are m
onoclinic, space group P2(1)/c, with a = 9.5935(8) Angstrom, b = 9.353
(2) Angstrom, c = 10.655(2) Angstrom, alpha = 90 degrees, beta = 100.0
3(1)degrees, gamma = 90, V = 941.5(5) Angstrom(3), R = 0.051, and Z =
2. Crystals of [Ni(DHPrPE)(2)Cl]Cl (2) an monoclinic, space group I2,
with a = 15.951(3) Angstrom, b = 11.454(2) Angstrom, c = 20.843(3) Ang
strom, alpha = 90 degrees, beta = 91.24(2)degrees, gamma = 90 degrees,
V = 3807(2) Angstrom(3), R = 0.062, and Z = 4. Crystals of [Rh(DHPrPE
)(2)][Cl] (3) are triclinic, space group P (1) over bar, with a = 13.9
00(2) Angstrom, b = 15.378(2) Angstrom, c = 18.058(2) Angstrom, alpha
= 87.71(1)degrees, beta = 75.03(1)degrees, gamma = 85.24(1), V = 3715(
2) Angstrom(3), R = 0.044, and Z = 4. Crystals of [Ru(DHBuPE)(2)Cl-2][
Cl] (4) are monoclinic, space group C2/c, with a = 14.310(2) Angstrom,
b = 21.630(2) Angstrom, c = 15.459(3) Angstrom, alpha = 90 degrees, b
eta = 99.83(1)degrees, gamma = 90, V = 4715(1) Angstrom(3), R = 0.056,
and Z = 4.