RH French, VA Parsegian, R Podgornik, RF Rajter… - Reviews of Modern …, 2010 - APS
Our understanding of the “long range” electrodynamic, electrostatic, and polar interactions that dominate the organization of small objects at separations beyond an interatomic bond …
The interfacial structure between the muscovite (001) surface and aqueous solutions containing monovalent cations (3× 10–3 m Li+, Na+, H3O+, K+, Rb+, or Cs+, or 3× 10–2 m …
Charged materials in aqueous systems interact according to their interfacial properties, typically described by the electrical double layer (EDL). Distributions of divalent metal …
Barium (Ba) is a nonessential element to terrestrial organisms and is known to be toxic at elevated concentrations. In this study, the bioavailability and toxicity of Ba in barite (BaSO4) …
X Tan, X Ren, C Chen, X Wang - TrAC Trends in Analytical Chemistry, 2014 - Elsevier
We review the analysis of lanthanide speciation at solid-water interfaces. We summarize the various mechanisms of lanthanide interaction with sorbent surfaces, such as surface …
K Kobayashi, Y Liang, S Murata, T Matsuoka… - Langmuir, 2017 - ACS Publications
Based on molecular dynamics simulations of eight ions (Na+, K+, Rb+, Cs+, Mg2+, Ca2+, Sr2+, and Ba2+) on muscovite mica surfaces in water, we demonstrate that experimental …
Classical electric double layer (EDL) models have been widely used to describe ion distributions at charged solid‐water interfaces in dilute electrolytes. However, the chemistry …
N Loganathan, BO Ferguson, B Arey… - The Journal of …, 2020 - ACS Publications
Soil minerals and organic matter play critical roles in nutrient cycling and other life-essential biogeochemical processes, yet the structural and dynamical details of natural organic matter …
The three-dimensional structure of the barite (001)–water interface was studied using in situ specular and nonspecular X-ray reflectivity (XR). Displacements of the barium and sulfate …