Invention Grant
- Patent Title: Nano-sized boron-doped diamond (BDD) enabled electrodes
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Application No.: US17206935Application Date: 2021-03-19
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Publication No.: US12092602B2Publication Date: 2024-09-17
- Inventor: Paul K. Westerhoff , Sergio Garcia-Segura , Shahnawaz Sinha , Rishabh Bansal , Rafael Verduzco , Michael S. Wong
- Applicant: Paul K. Westerhoff , Sergio Garcia-Segura , Shahnawaz Sinha , Rishabh Bansal , Rafael Verduzco , Michael S. Wong
- Applicant Address: US AZ Scottsdale
- Assignee: Arizona Board of Regents on behalf of Arizona State University,William Marsh Rice University
- Current Assignee: Arizona Board of Regents on behalf of Arizona State University,William Marsh Rice University
- Current Assignee Address: US AZ Scottsdale; US TX Houston
- Agency: Fish & Richardson P.C.
- Main IPC: G01N27/30
- IPC: G01N27/30 ; C02F1/461

Abstract:
An electrode includes an electrically conductive substrate with a coating containing boron-doped diamond (BDD) nanoparticles. Fabricating the electrode can include dispersing BDD nanoparticles in a solvent to yield a suspension, coating a conductive substrate with the suspension, and drying the suspension to yield the electrode. In some cases, fabricating the electrode includes combining BDD nanoparticles with a polymeric resin precursor to yield a mixture including a metal oxide, coating a conductive substrate with the mixture to yield a coated substrate, and calcining the coated substrate to yield a metal oxide coating including BDD nanoparticles. In certain cases, fabricating the electrode includes combining powdered activated carbon with polymeric linkers to yield a polymeric precursor solution, combining BDD nanoparticles with the polymeric precursor solution to yield a mixture, coating a conductive substrate with the mixture to yield a coated substrate, and crosslinking the polymeric linkers to yield the electrode.
Public/Granted literature
- US20210293741A1 NANO-SIZED BORON-DOPED DIAMOND (BDD) ENABLED ELECTRODES Public/Granted day:2021-09-23
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