Nova Patents
IL274971A

Silver nanoplate compositions and methods

Abstract

This record has no abstract on file.

Term

No projected expiry on record.

  1. Priority
  2. Filed
  3. Published
  4. Today

39 claims: 10 independent, 29 dependent

  1. 1
    CLAIMS:1. A process for making concentrated silver nanoplates that preserve shape postconcentration while increasing optical density, the process comprising: adding a stabilizing agent to a pre-concentrated solution, wherein the pre-concentrated solution comprises silver nanoplates, wherein each of the silver nanoplates has a plate shape, wherein the pre-concentrated solution has a peak optical density at a first wavelength;wherein the stabilizing agent comprises a polyvinyl based polymer and a borate;and increasing a concentration of the silver nanoplates in the pre-concentrated solution to generate a concentrated solution, wherein the concentrated solution has a peak optical density at a second wavelength, wherein the peak optical density of the concentrated solution is greater than the peak optical density of the pre-concentrated solution, and wherein at least a portion of the silver nanoplates in the pre-concentrated solution retain the plate shape in the concentrated solution.
  2. 3
    The process of any one of claims 1 - 2, wherein the silver nanoplates are prepared via a seed mediated growth mechanism, wherein the seed mediated growth mechanism comprises:combining citrate, polystyrene sodium sulfonate (PSSS), and sodium borohydride in a first solution, adding silver nitrate to the first solution to form a seed solution, adding a portion of the seed solution to a second solution, wherein the second solution comprises ascorbic acid, and adding silver nitrate to the second solution to form the preconcentrated solution.
  3. 4
    The process of any one of claims 1 or 3, wherein increasing the concentration is performed using tangential flow filtration, wherein the tangential flow filtration utilizes a filter membrane with pores with a molecular weight cutoff in a range between 10 kDa and 0.05 micron, wherein the peak optical density of the concentrated solution is at least ten times higher than the peak optical density of the pre-concentrated solution, wherein the peak optical density of the concentrated solution is at least 100 cm.
  4. 5
    The process of any one of claims 1 - 4, further comprising coating the silver nanoplates with silica, wherein coating the silver nanoplates with silica comprises:adding ethanol to the pre-concentrated solution, adding a base to the pre-concentrated solution, and adding a silane to the pre-concentrated solution.
  5. 31
    A composition comprising:a plurality of silver nanoplates in a solution comprising an optical density, wherein the silver nanoplates comprise a coating on a surface of the silver nanoplates, wherein the optical density is greater than 100 cm1־, and wherein the coating comprises a borate and at least one agent selected from the group consisting of: a polyvinyl based polymer and a thiol-containing molecule.
  6. 33
    The composition of any one of claims 31 - 32, wherein the coating comprises said polyvinyl based polymer, wherein the polyvinyl based polymer is selected from the group consisting of:a polyvinyl pyrrolidone (PVP) and a polyvinyl alcohol (PVA).
  7. 34
    The composition of any one of claims 31 - 33, wherein the coating comprises said thiol-containing molecule, wherein the thiol-containing molecule comprises at least one of the group consisting of:a lipoic acid, a mercaptohexadecanoic acid, a mercaptoundecanoic acid, and a dihydrolipoic acid.
  8. 35
    The composition of any one of claims 31 - 34, wherein the coating further comprises a metal oxide shell.
  9. 38
    The composition of any one of claims 31 - 37, wherein the optical density is greater than 500 cm'1.
  10. 39
    The composition of any one of claims 31 - 38, wherein the optical density is greater than 1000 cm'1.