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Colloidal mixing

Regazzoni, A.E. Matijevic, F. (1983) Formation of uniform colloidal mixed cobalt nickel ferrite particles. Colloids Surfaces 6 189—... [Pg.619]

CA 67, 75047n(J967) [Gelled expl compns contg a Xanthomonas hydrophilic colloid mixed with aq soln of inorganic nitrate (such as AN) and borax are described. Xanthomonas is a hydrophilic, exocellular, high-mo 1-wt colloid prepd by culture fermentation by... [Pg.577]

Cho, Y., et al. (1998). Mobility and size-distribution analyses of hetero-coagulated structures of colloidally mixed muUite precursor suspensions and their sinterahihty. J. Ceramic Soc. Japan. 106, 1230, 189-193. [Pg.603]

Fig, 21. Colloid mixing ratio expressed as the NaCMC percentage (left ordinate) and specific viscosity T) p (right ordinate) vs pH of the NaCMC-gelatin coacervation mixtures [120]... [Pg.245]

Fig. 1.19 Micrographs of latex colloids mixed with HEC by Speiiy [112-114]. Picture reprinted from P. R. Sperry, J. Colloid Interface Sci., 99 97, Copyright 1984, with permission Ixom Elsevier... Fig. 1.19 Micrographs of latex colloids mixed with HEC by Speiiy [112-114]. Picture reprinted from P. R. Sperry, J. Colloid Interface Sci., 99 97, Copyright 1984, with permission Ixom Elsevier...
Fig. 4.13 Comparison of experimental gas-liquid coexistence binodals (data) compared to GFVT (curves). Left panel, spherical colloids mixed with polymer chains in a -solvent for q = 0.84 (open triangles, [20]), 1.4 (stars, [21]) and 2.2 (crosses, [21]). Right panel, colloidal spheres plus polymers in a good solvent for q = 0.67 (open squares, [20]), 0.86 (inverse filled triangle, [54]) and 1.4 (pluses, [20])... Fig. 4.13 Comparison of experimental gas-liquid coexistence binodals (data) compared to GFVT (curves). Left panel, spherical colloids mixed with polymer chains in a -solvent for q = 0.84 (open triangles, [20]), 1.4 (stars, [21]) and 2.2 (crosses, [21]). Right panel, colloidal spheres plus polymers in a good solvent for q = 0.67 (open squares, [20]), 0.86 (inverse filled triangle, [54]) and 1.4 (pluses, [20])...
Figure 6 TEM photograph of Au/Ti02 prepared by Au colloid mixing with Ti02 powder, a) calcination in air at 200 C, b) calcination in air at 600X. ... Figure 6 TEM photograph of Au/Ti02 prepared by Au colloid mixing with Ti02 powder, a) calcination in air at 200 C, b) calcination in air at 600X. ...
Figure 7 Particle size distribution of Au deposited on n02 prqpared by Au colloid mixing with V1O2 powder after cdcination in air at, a) 200, b) 400 C, c) 600 C. Figure 7 Particle size distribution of Au deposited on n02 prqpared by Au colloid mixing with V1O2 powder after cdcination in air at, a) 200, b) 400 C, c) 600 C.
Study of the Decomposition of Colloidal Mixed Rare Earth Hydroxycarbonate Spheres by Conventional Thermal Treatment and by Electron-Beam Irradiation Within a High-Resolution Microscope, Z.C. Kang, M.J. McKelvy and L. Eyring, Z. Anorg. Allgem. Chem. (in honor of R. Hoppe), 616, 125-132 (1992). [Pg.553]

The respective differences in the redox potentials of the Co /Co (-0.277V vs. SHE) and PdClJ /Pd (0.591 V vs. SHE) couples provide the thermodynamic driving force to encourage the aforementioned reaction, with PdCU" being immediately reduced upon its addition to the colloidal mix of elemental cobalt As this replacement reaction proceeds, the reduced palladium atoms nucleate, forming a thin perimeter of nanoparticles around a cobalt core. Removal of the cobalt metal... [Pg.327]


See other pages where Colloidal mixing is mentioned: [Pg.103]    [Pg.709]    [Pg.586]    [Pg.388]    [Pg.569]    [Pg.267]    [Pg.485]    [Pg.621]    [Pg.226]    [Pg.246]    [Pg.157]    [Pg.234]    [Pg.742]    [Pg.384]    [Pg.159]   
See also in sourсe #XX -- [ Pg.388 ]




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