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Title: Interfacial reactions of Cu( ii ) adsorption and hydrolysis driven by nano-scale confinement

Abstract

Spatial confinement of silica surfaces leads to increased polymerization of adsorbed copper( ii ) species.

Authors:
 [1]; ORCiD logo [2]; ORCiD logo [3]; ORCiD logo [3]; ORCiD logo [3];  [4]; ORCiD logo [3]
  1. Storage and Transportation Technology Department, Sandia National Laboratories, Albuquerque, USA
  2. Department of Geosciences, Georgia State University, Atlanta, 30303 Georgia
  3. Geochemistry Department, Sandia National Laboratories, Albuquerque, USA
  4. Department of Geosciences, Georgia State University, Atlanta, 30303 Georgia, Department of Chemistry
Publication Date:
Sponsoring Org.:
USDOE Office of Science (SC), Basic Energy Sciences (BES) (SC-22)
OSTI Identifier:
1572586
Resource Type:
Publisher's Accepted Manuscript
Journal Name:
Environmental Science: Nano
Additional Journal Information:
Journal Name: Environmental Science: Nano; Journal ID: ISSN 2051-8153
Publisher:
Royal Society of Chemistry (RSC)
Country of Publication:
United Kingdom
Language:
English

Citation Formats

Knight, Andrew W., Ilani-Kashkouli, Poorandokht, Harvey, Jacob A., Greathouse, Jeffery A., Ho, Tuan A., Kabengi, Nadine, and Ilgen, Anastasia G. Interfacial reactions of Cu( ii ) adsorption and hydrolysis driven by nano-scale confinement. United Kingdom: N. p., 2020. Web. doi:10.1039/C9EN00855A.
Knight, Andrew W., Ilani-Kashkouli, Poorandokht, Harvey, Jacob A., Greathouse, Jeffery A., Ho, Tuan A., Kabengi, Nadine, & Ilgen, Anastasia G. Interfacial reactions of Cu( ii ) adsorption and hydrolysis driven by nano-scale confinement. United Kingdom. doi:10.1039/C9EN00855A.
Knight, Andrew W., Ilani-Kashkouli, Poorandokht, Harvey, Jacob A., Greathouse, Jeffery A., Ho, Tuan A., Kabengi, Nadine, and Ilgen, Anastasia G. Wed . "Interfacial reactions of Cu( ii ) adsorption and hydrolysis driven by nano-scale confinement". United Kingdom. doi:10.1039/C9EN00855A.
@article{osti_1572586,
title = {Interfacial reactions of Cu( ii ) adsorption and hydrolysis driven by nano-scale confinement},
author = {Knight, Andrew W. and Ilani-Kashkouli, Poorandokht and Harvey, Jacob A. and Greathouse, Jeffery A. and Ho, Tuan A. and Kabengi, Nadine and Ilgen, Anastasia G.},
abstractNote = {Spatial confinement of silica surfaces leads to increased polymerization of adsorbed copper( ii ) species.},
doi = {10.1039/C9EN00855A},
journal = {Environmental Science: Nano},
number = ,
volume = ,
place = {United Kingdom},
year = {2020},
month = {1}
}

Journal Article:
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This content will become publicly available on October 31, 2020
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