Johannes Rietbrock
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View article: Understanding the role of water in Li-mediated N2 reduction using in situ IR spectroscopy
Understanding the role of water in Li-mediated N2 reduction using in situ IR spectroscopy Open
Understanding the fundamental processes that govern formation of the solid electrolyte interphase (SEI) layer in lithium mediated nitrogen reduction may be crucial to the design of improved electrolyte formulations. In this work, the roles…
View article: A carbon cathode for lithium mediated electrochemical ammonia synthesis
A carbon cathode for lithium mediated electrochemical ammonia synthesis Open
To introduce the potential for tuneability of the cathode in lithium mediated ammonia synthesis, we report a carbon cathode which produces ammonia at a Faradaic efficiency of 37%.
View article: <i>In situ</i> spectroscopy reveals how water-driven SEI formation controls selectivity in Li-mediated N<sub>2</sub> reduction
<i>In situ</i> spectroscopy reveals how water-driven SEI formation controls selectivity in Li-mediated N<sub>2</sub> reduction Open
Understanding the fundamental processes that govern formation of the solid electrolyte interphase (SEI) layer in lithium mediated nitrogen reduction is crucial to the design of improved electrolyte formulations.
View article: The origin of overpotential in lithium-mediated nitrogen reduction
The origin of overpotential in lithium-mediated nitrogen reduction Open
We present a simple method for determining the reversible hydrogen electrode potential in a lithium-mediated nitrogen reduction system, and use this to highlight that the greatest source of cathodic potential loss is the requirement for in…