IP Library Granted Patent US 9,623,481
Granted Patent B2
US 9,623,481 · App. 13/267,704 · Granted Apr 18, 2017

Nanostructures having enhanced catalytic performance and method for preparing same

Inventors: Stanislaus Wong (Stony Brook, NY); Christopher Koenigsmann (Stony Brook, NY)
Assignee: THE RESEARCH FOUNDATION OF STATE UNIVERSITY OF NEW YORK
B22F1/0025B22F9/18B82Y30/00B82Y40/00H01M4/92
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Quick Facts
Patent No.
US 9,623,481
App. No.
13/267,704
Granted
Apr 18, 2017
Kind
B2
Abstract

Provided herein is a nanostructure refined by suspending an unrefined nanostructure with a solvent, dispersing the suspended nanostructure in an acidic solution and agitating the acidic solution to produce a refined nanostructure.

Claims (22)

1. A process for refining a nanostructure, the process comprising:

suspending an unrefined nanostructure with a solvent;

dispersing the suspended nanostructure in an acidic solution; and

agitating the acidic solution to produce a refined nanostructure,

wherein the nanostructure comprises a noble metal combined with a transition metal,

wherein refining comprises reducing residues from the nanostructures, wherein the residues comprise partially reduced noble metal compounds, wherein the partially reduced noble metal compounds comprise noble metal oxides and halides,

wherein the nanostructure is refined.

2. The process of claim 1 , wherein dispersing the suspended nanostructure includes at least one of physical agitation, mechanical agitation, sonication, stirring and homogenization.

3. The process of claim 1 , wherein the acidic solution includes an acid that ionizes in water.

4. The process of claim 1 , wherein the acidic solution includes one of hydrochloric acid, hydroiodic acid, hydrobromic acid, sulfuric acid, perchloric acid, phosphoric acid, p-toluenesulfonic acid, chloric acid, bromic acid, perbromic acid, iodic acid, periodic acid, fluorosulfuric acid, and triflic acid.

5. The process of claim 1 , further comprising:

assessing dissolution based on a characteristic of the acidic solution; and

quenching upon reaching a purification threshold, based on the assessing.

6. The process of claim 5 , wherein assessing the dissolution comprises one of spectroscopy and visual assessment.

7. The process of claim 5 , wherein quenching comprises:

isolating the nanostructure; and

dispersing the isolated structure in a polar solvent.

8. The process of claim 7 , wherein isolating the nanostructure comprises at least one of filtration, electric-field induced processing, sedimentation and precipitation.

9. The process according to claim 1 , wherein refining the nanostructure further comprises reducing surface defects and low coordination atoms.

10. The process according to claim 1 , wherein the nanostructure is a platinum nanowire having a diameter of 0.9 to 2 nm.

11. The process according to claim 10 , wherein the diameter is 0.9 to 1.7 nm.

12. The process according to claim 10 , wherein the nanowire has an oxygen reduction reaction onset between 0.7 and 0.8V.

Assignments (2)
CHANGE OF NAME Recorded Feb 21, 2014
From: THE RESEARCH FOUNDATION OF STATE UNIVERSITY OF NEW YORK
To: THE RESEARCH FOUNDATION FOR THE STATE UNIVERSITY OF NEW YORK
Reel/Frame 032323/0657 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 19, 2012
From: WONG, STANISLAUS; KOENIGSMANN, CHRISTOPHER
To: THE RESEARCH FOUNDATION OF STATE UNIVERSITY OF NEW YORK
Reel/Frame 028989/0499 →
Continuity (2)
Provisional Application 61390421 · Oct 6, 2010
Related Publication 20120088656A1 · Apr 12, 2012