| Literature DB >> 24708898 |
Vasyl Chumachenko1, Nataliya Kutsevol1, Michel Rawiso2, Marc Schmutz2, Christian Blanck2.
Abstract
Silver nanoparticles were synthesized in linear and branched polyelectrolyte matrices using different reductants and distinct synthesis conditions. The effect of the host hydrolyzed linear polyacrylamide and star-like copolymers dextran-graft-polyacrylamide of various compactness, the nature of the reductant, and temperature were studied on in situ synthesis of silver sols. The related nanosystems were analyzed by high-resolution transmission electron microscopy and UV-vis absorption spectrophotometry. It was established that the internal structure of the polymer matrix as well as the nature of the reductant determines the process of the silver nanoparticle formation. Specifically, the branched polymer matrices were much more efficient than the linear ones for stable nanosystem preparation.Entities:
Keywords: Branched polymers; Dextran; Grafted copolymers; Hydrolysis; Polyacrylamide; Polyelectrolytes; Silver nanoparticles
Year: 2014 PMID: 24708898 PMCID: PMC3996903 DOI: 10.1186/1556-276X-9-164
Source DB: PubMed Journal: Nanoscale Res Lett ISSN: 1556-276X Impact factor: 4.703
Molecular parameters of the D70- -PAA copolymers and the linear PAA
| D70- | 2.15 | 85 | 3.36 | 3.26 |
| D70- | 1.43 | 64 | 2.87 | 4.89 |
| PAA | 1.40 | 68 | 3.23 | - |
Conversion degree of polymers (hydrolysis time 30 min)
| D70- | 35 |
| D70- | 37 |
| PAA | 28 |
Figure 1Concentration dependence of reduced viscosity for hydrolyzed D70--PAA5 and D70--PAA20 samples. Time of hydrolysis is 30 min.
Figure 2UV-vis absorption spectra of silver sols synthesized in the polymer matrices. D70-g-PAA20 (1), D70-g-PAA5 (2), and PAA (3). T = 20 C. The reductant is borohydride.
Figure 3TEM image (a) and nanoparticle size distribution (b) in silver sols synthesized in D70-PAA5 matrix. The reductant is sodium borohydride.
Figure 4UV-vis absorption spectra of silver sols synthesized in the polymer matrices. D70-g-PAA20. (1) T = 40°C, (2) T = 60°C.
Figure 5UV-vis absorption spectra of silver sols synthesized in the polymer matrices. D70-g-PAA20 (1), D70-g-PAA5 (2), and PAA (3). T = 20°C. The reductant is hydrazine hydrate.
Figure 6TEM image (a) and area of nanoparticle distribution (b) in silver sols synthesized in D70-PAA5 matrix. The reductant is hydrazine hydrate.
Figure 7TEM image of a single multi-branched silver particle. The reductant is hydrazine hydrate.