IP Library Granted Patent US 10,744,488
Granted Patent B2
US 10,744,488 · App. 16/070,943 · Granted Aug 18, 2020

Ozone-activated nanoporous gold and methods of its use

Inventors: Cynthia M. Friend (Belmont, MA); Robert J. Madix (Belmont, MA); Branko Zugic (Somerville, MA); Lucun Wang (Malden, MA); Michelle L. Personick (Cambridge, MA); Juergen Biener (San Leandro, CA); Monika Margarete Biener (San Leandro, CA)
Assignees: President and Fellows of Harvard College; Lawrence Livermore National Security, LLC
B01J23/52B01J35/0013B01J35/023B01J35/026B01J35/10B01J35/1009B01J35/1061B01J35/1066B01J37/0018B01J37/0215B01J37/06B01J37/14B01J37/16C07C45/29C07C67/39C07C67/40B01J35/002
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Quick Facts
Patent No.
US 10,744,488
App. No.
16/070,943
Granted
Aug 18, 2020
Kind
B2
Abstract

The invention relates to nanoporous gold nanoparticle catalysts formed by exposure of nanoporous gold to ozone at elevated temperatures, as well as methods for production of esters and other compounds.

Claims (10)

1. A nanoporous gold catalyst produced by a method comprising the steps of:

providing nanoporous gold comprising 0.1 to 10% silver by atom; and

contacting the nanoporous gold with ozone at a temperature of 100° C. or greater for a time sufficient to form the activated nanoporous gold catalyst.

2. A nanoporous gold catalyst comprising from 0.1 to 10% silver by atom, wherein the catalyst is treated with ozone at a temperature of 100° C.-185° C., or wherein the catalyst is active for selective oxidation of alcohols and inactive for oxidation of CO, or wherein at least 80% of the surface silver is oxidized and at least 60% of the surface gold is oxidized.

3. The nanoporous gold catalyst of claim 2 , further treated with a mixture of dioxygen and a primary alcohol, or having a ligament width of 10-500 nm.

4. The catalyst of claim 2 , wherein the surface layer of the catalyst has a higher Ag/Au atomic ratio relative to the bulk material of the catalyst.

5. The nanoporous gold catalyst of claim 2 , wherein the catalyst comprises an oxygen species with a binding energy of 531.5 eV.

6. The nanoporous gold catalyst of claim 2 , wherein the catalyst is active for selective oxidation of alcohols and inactive for oxidation of CO.

7. The nanoporous gold catalyst of claim 2 , wherein the catalyst is treated with ozone at a temperature of 100° C.-185° C., and the ozone is present within a mixture comprising one or more gases at a concentration of from 10 to 50 g/Nm 3 .

8. The nanoporous gold catalyst of claim 2 , wherein at least 80% of the surface silver is oxidized and at least 60% of the surface gold is oxidized.

Assignments (5)
CONFIRMATORY LICENSE (SEE DOCUMENT FOR DETAILS) Recorded Mar 19, 2021
From: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
To: U.S. DEPARTMENT OF ENERGY
Reel/Frame 055660/0615 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 1, 2020
From: BIENER, JUERGEN; BIENER, MONIKA MARGARETE
To: LAWRENCE LIVERMORE NATIONAL SECURITY, LLC
Reel/Frame 053117/0052 →
CONFIRMATORY LICENSE Recorded Mar 26, 2019
From: HARVARD UNIVERSITY
To: UNITED STATES DEPARTMENT OF ENERGY
Reel/Frame 048706/0001 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2018
From: FRIEND, CYNTHIA; MADIX, ROBERT J.; PERSONICK, MICHELLE L.; WANG, LU CUN; ZUGIC, BRANCO
To: PRESIDENT AND FELLOWS OF HARVARD COLLEGE
Reel/Frame 047797/0765 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 17, 2018
From: BIENER, JUERGEN; BIENER, MONIKA MARGARETE
To: LAWRENCE LIVERMORE NATIONAL LABORATORY, LLC
Reel/Frame 047797/0818 →
Continuity (2)
Provisional Application 62280997 · Jan 20, 2016
Related Publication 20190022627A1 · Jan 24, 2019