SANS study to probe nanoparticle dispersion in nanocomposite membranes of aromatic polyamide and functionalized silica nanoparticles

被引:38
作者
Jadav, Ghanshyam L. [1 ]
Aswal, Vinod K. [2 ]
Singh, Puyam S. [1 ]
机构
[1] Cent Salt & Marine Chem Res Inst, RO Membrane Div, Council Sci & Ind Res, Bhavnagar 364002, Gujarat, India
[2] Bhabha Atom Res Ctr, Div Solid State Phys, Bombay 400085, Maharashtra, India
关键词
Nanoparticle dispersion; Nanoparticle-polyamide membrane; SANS; ANGLE NEUTRON-SCATTERING; IN-SITU POLYMERIZATION; REVERSE-OSMOSIS; FILMS; SEPARATION; NANOSCALE; PARTICLES; BLOCKS;
D O I
10.1016/j.jcis.2010.07.028
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Silica nanoparticles produced from organically functionalized silicon alkoxide precursors were incorporated into polyamide film to produce a silica-polyamide nanocomposite membrane with enhanced properties. The dispersion of the silica nanoparticles in the nanocomposite membrane was characterized by performing small-angle neutron scattering (SANS) measurements on dilute reactant systems and dilute solution suspensions of the final product. Clear scattering of monodisperse spherical particles of 10-18 angstrom R-g were observed from dilute solutions of the initial reactant system. These silica nanoparticles initially reacted with diamine monomers of polyamide and subsequently were transformed into polyamide-coated silica nanoparticles: finally nanoparticle aggregates of 27-45 angstrom R-g were formed. The nanoparticle dispersion of the membrane as the nanosized aggregates is in corroboration with ring- or chain-like assemblies of the nanoparticles dispersed in the bulk polyamide phase as observed by transmission electron microscopy. It is demonstrated that dispersions of silica nanoparticles as the nanosized aggregates in the polyamide phase could be achieved in the nanocomposite membrane with a silica content up to about 2 wt.%. Nanocomposite membranes with higher silica loading similar to 10 wt.% lead to the formation of large aggregates of sizes over 100 angstrom R-g in addition to the nanosized aggregates. (C) 2010 Elsevier Inc. All rights reserved.
引用
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页码:304 / 314
页数:11
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