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Jong K. Keum

Government of the United States of America - Center for Nanophase Materials Sciences

1 Bethel Valley Road, P.O. Box 2008, Mail Stop 608

Room B-106, Building 5700

Oak Ridge, TN 37831

United States

SCHOLARLY PAPERS

3

DOWNLOADS

166

TOTAL CITATIONS

6

Scholarly Papers (3)

1.

Continuous Recovery of Phosphoric Acid and Rare-Earths Containing Particles from Phosphoric Acid Sludge Using a Decanter Centrifuge

Number of pages: 34 Posted: 19 Jul 2022
Government of the United States of America - Oak Ridge National Laboratory, Government of the United States of America - Oak Ridge National Laboratory, Government of the United States of America - Center for Nanophase Materials Sciences, Government of the United States of America - Oak Ridge National Laboratory, affiliation not provided to SSRN and Government of the United States of America - Oak Ridge National Laboratory
Downloads 93 (725,554)
Citation 2

Abstract:

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process intensification, Rare Earths, decanter centrifuge, solid-liquid separation, phosphoric-acid sludge

2.

Chemical Specificity in Polyzwitterion-Polyelectrolyte Coacervates: Polycations vs Polyanions

Number of pages: 33 Posted: 11 Apr 2024
Government of the United States of America - Center for Nanophase Materials Sciences, Government of the United States of America - Oak Ridge National Laboratory, Government of the United States of America - Oak Ridge National Laboratory, University of Tennessee, Knoxville, Government of the United States of America - Oak Ridge National Laboratory, Government of the United States of America - Oak Ridge National Laboratory, Government of the United States of America - Oak Ridge National Laboratory, Government of the United States of America - Oak Ridge National Laboratory, Oak Ridge National Laboratory - Center for Nanophase Materials Sciences, Government of the United States of America - Oak Ridge National Laboratory and Government of the United States of America - Oak Ridge National Laboratory
Downloads 50 (1,063,489)

Abstract:

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polyelectrolytes, coacervation, polyzwitterions

3.

Surpassing the Stiffness-Extensibility Trade-Off of Elastomers via Mastering the Hydrogen-Bonding Clusters

Number of pages: 43 Posted: 19 Jul 2021
Oak Ridge National Laboratory - Chemical Sciences Division, University of Tennessee, Knoxville - Department of Chemistry, University of Tennessee, Knoxville - Department of Materials Science and Engineering, Oak Ridge National Laboratory - Chemical Sciences Division, Oak Ridge National Laboratory - Center for Nanophase Materials Sciences, Government of the United States of America - Center for Nanophase Materials Sciences, Oak Ridge National Laboratory - Neutron Scattering Division, Michigan State University - Department of Chemical Engineering and Materials Science, Oak Ridge National Laboratory - Center for Nanophase Materials Sciences, University of Tennessee, Knoxville - Department of Chemistry and Oak Ridge National Laboratory - Chemical Sciences Division
Downloads 23 (1,411,822)
Citation 4

Abstract:

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elastomers, stiffness-extensibility trade-off, interpenetrated network, hydrogen-bonding clusters