CA2625880C

Composite nanoparticles, nanoparticles and methods for producing same

Abstract

In various aspects provided are methods for producing a nanoparticle within a cross-linked, collapsed polymeric material, said method including (a) providing a polymeric solution comprising a polymeric material; (b) collapsing at least a portion of the polymeric material about one or more precursor moieties; (c)cross-linking the polymeric material; (d) modifying at least a portion of said precursor moieties to form one or more nanoparticles and thereby forming a composite nanoparticle. In various embodiments, a non-confined nanoparticle can be produced by complete pyrolysis of the confined nanoparticle, and a carbon-coated nanoparticle by incomplete pyrolysis of the confined nanoparticle.

CA2625880C, drawing sheet 1
Sheet 1 of 20

Term

0.1 yearsleft in the term

Expires 13 October 2026.

  1. Priority
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  3. Granted
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28 claims: 3 independent, 25 dependent

  1. 1
    CA 02625880 2015-12-10 CLAIMS 1. A method for producing a composite nanoparticle, comprising the steps of:collapsing in solution a plurality of dissolved polyelectrolyte polymer molecules upon a precursor moiety to form a composite precursor moiety having a mean diameter in the range between about 1 nm and about 100 nm, wherein the polyelectrolyte polymer molecules have an extended conformation in a first solution state before collapsing and a more compact conformation in a second solution state after collapsing;and cross-linking the polyelectrolyte polymer molecules of the composite precursor moiety to form a composite nanoparticle.
  2. 16
    A method comprising the steps of:collapsing a plurality of dissolved charged polyelectrolyte polymer molecules upon a precursor moiety to form a composite precursor moiety having a mean CA 02625880 2015-12-10 diameter in the range between about 1 nm and about 100 nm, wherein the polyelectrolyte polymer molecules have an extended conformation in a first solution state before collapsing and a more compact conformation in a second solution state after collapsing;cross-linking the polyelectrolyte polymer molecules of the composite precursor moiety to form a composite nanoparticle material;and contacting a substrate with the composite nanoparticle material to form a first layer on at least a portion of the substrate.
  3. 20
    A composite nanoparticle comprising a precursor moiety confined within a plurality of cross-linked, collapsed, polyelectrolyte polymer molecules, wherein the precursor moiety comprises an organic ion.