IP Library Granted Patent US 10,018,583
Granted Patent B2
US 10,018,583 · App. 14/778,129 · Granted Jul 10, 2018

Carbon material supported hollow metal oxide nanoparticles, methods and applications

Inventors: Yingchao Yu (Ithaca, NY); Héctor D. Abruña (Ithaca, NY); Deli Wang (Hubei, CN); Weidong Zhou (Ithaca, NY); Liu Hongfang (Hubei, CN); Qin Shuang (Hubei, CN)
Assignees: Cornell University; Huazhong University of Science and Technology
G01N27/308H01G11/24H01G11/30H01G11/32H01G11/46H01M4/0416H01M4/366H01M4/48H01M4/485H01M4/505H01M4/525H01M4/583H01M4/587H01M4/625H01M10/0525H01M4/362Y02E60/13
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Quick Facts
Patent No.
US 10,018,583
App. No.
14/778,129
Granted
Jul 10, 2018
Kind
B2
Abstract

A method for preparing a material composition comprising a hollow transition metal oxide nanoparticle supported upon a carbon material support includes a solution impregnation process step, followed by a thermal reduction process step and finally a thermal oxidation process step. The material composition, an electrode and an electrical component such as but not limited to a battery are all predicated at least in-part upon the material composition prepared in accord with the foregoing method. The foregoing material composition, electrode, battery and method may ultimately provide a LIB with enhanced performance.

Claims (11)

1. A method for preparing a material composition comprising:

impregnating a carbon material support with a transition metal salt to form a transition metal salt impregnated carbon material support;

thermally annealing the transition metal salt impregnated carbon material support within a reducing environment to provide a reduced transition metal particle supported on the carbon material support; and

thermally annealing the reduced transition metal particle supported on the carbon material support within an oxidizing environment to provide a hollow transition metal oxide nanoparticle supported on the carbon material support, wherein:

the hollow transition metal oxide nanoparticle has:

a particle size from about 50 to about 300 nanometers;

a pore size from about 5 to about 100 nanometers; and

a hollow volume percentage from about 20 to about 60 percent, wherein the hollow volume includes:

a primary void of greater than about 50 nm;

a plurality of secondary voids of less than about 10 nm; and

a uniform elemental distribution of metal and oxygen across the nanoparticle.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2015
From: YU, YINGCHAO; ABRUNA, HECTOR D.; ZHOU, WEIDONG; WANG, DELI; LIU, HONGFANG; QIN, SHUANG
To: CORNELL UNIVERSITY; HUAZHONG UNIVERSITY OF SCIENCE AND TECHNOLOGY
Reel/Frame 036646/0243 →
Priority Claims (1)
CN 103219510 · Mar 21, 2013 · national
Continuity (2)
Provisional Application 61816436 · Apr 26, 2013
Related Publication 20160131609A1 · May 12, 2016