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20202023
most citedPrimitive Model Electrolytes in the Near and Far Field: Decay Lengths from DFT and Simulations

76 citations · 154 across the 5 of their papers we have counts for

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cond-mat.soft2022

Absence of anomalous underscreening in highly concentrated aqueous electrolytes confined between smooth silica surfaces

Saravana Kumar, Peter Cats, Mohammed B. Alotaibi +5

Recent experiments and a series of subsequent theoretical studies suggest the occurrence of universal underscreening in highly concentrated electrolyte solutions. We performed a se…

cond-mat.soft202127 cited

The Differential Capacitance as a probe for the electric double layer structure and the electrolyte bulk composition

Peter Cats, René van Roij

In this work we theoretically study the differential capacitance of an aqueous electrolyte in contact with a planar electrode, using classical Density Functional Theory, and show h…

cond-mat.soft2021

Capacitance and Structure of Electric Double Layers: Comparing Brownian Dynamics and Classical Density Functional Theory

Peter Cats, Ranisha S. Sitlapersad, Wouter K. den Otter +2

We present a study of the structure and differential capacitance of electric double layers of aqueous electrolytes. We consider Electric Double Layer Capacitors (EDLC) composed of…

cond-mat.soft202144 cited

Machine-learning free-energy functionals using density profiles from simulations

Peter Cats, Sander Kuipers, Sacha de Wind +4

The formally exact framework of equilibrium Density Functional Theory (DFT) is capable of simultaneously and consistently describing thermodynamic and structural properties of inte…

cond-mat.soft202076 cited

Primitive Model Electrolytes in the Near and Far Field: Decay Lengths from DFT and Simulations

P. Cats, R. Evans, A. Härtel +1

Inspired by recent experimental observations of anomalously large decay lengths in concentrated electrolytes, we revisit the Restricted Primitive Model (RPM) for an aqueous electro…