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Electrochemical Ammonia Synthesis—The Selectivity Challenge

ACS Catalysis · 2016 · Vol. 7(1) · pp. 706–709
Aayush R. SinghBrian A. RohrJay A. SchwalbeMatteo CargnelloKaren ChanThomas F. JaramilloIb ChorkendorffJens K. Nørskov

Abstract

Here, the N<sub>2</sub> molecule is particularly inert; the N–N triple bond is one of the most stable in all of chemistry, and in addition, the molecule has no dipole moment and a very low polarizability.

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Villum Fonden
  • Office of Science
  • Division of Graduate Education
  • Basic Energy Sciences
Citations
948
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field-weighted impact
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38
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References
How a century of ammonia synthesis changed the world
Nature Geoscience · 2008 · 4,417 citations
Towards an ammonia-mediated hydrogen economy?
Catalysis Today · 2005 · 528 citations
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