activity
20162022
most citedPrimitive Model Electrolytes in the Near and Far Field: Decay Lengths from DFT and Simulations

76 citations · 105 across the 3 of their papers we have counts for

collaborators

5 papers

cond-mat.soft202215 cited

The Primitive Model in Classical Density Functional Theory: Beyond the Standard Mean-Field Approximation

Moritz Bültmann, Andreas Härtel

The primitive model describes ions by point charges with an additional hard-core interaction. In classical density-functional theory the mean-field electrostatic contribution can b…

cond-mat.soft202014 cited

Bayesian unsupervised learning reveals hidden structure in concentrated electrolytes

Penelope Jones, Fabian Coupette, Andreas Härtel +1

Electrolytes play an important role in a plethora of applications ranging from energy storage to biomaterials. Notwithstanding this, the structure of concentrated electrolytes rema…

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…

cond-mat.stat-mech2018

Screening Lengths in Ionic Fluids

Fabian Coupette, Alpha A. Lee, Andreas Härtel

The decay of correlations in ionic fluids is a classical problem in soft matter physics that underpins applications ranging from controlling colloidal self-assembly to batteries an…

cond-mat.soft2016

Dense ionic fluids confined in planar capacitors: in- and out-of-plane structure from classical density functional theory

Andreas Härtel, Sela Samin, Rene van Roij

The ongoing scientific interest in the properties and structure of electric double layers (EDLs) stems from their pivotal role in (super)capacitive energy storage, energy harvestin…