The role of mineral surfaces in the adsorption, transport, formation, and degradation of natural organic matter (NOM) in the biosphere remains an active research area owing to the difficulties in identifying proper working models of both NOM and mineral phases present in the environment. The variety of aqueous chemistries encountered in the subsurface (e.g., oxic vs. anoxic, variable pH) further complicate this field of study. Recently, the advent of nanoscale probes such as X-ray adsorption spectroscopy and surface vibrational spectroscopy applied to study such complicated interfacial systems have enabled new insight into NOM-mineral interfaces. Additionally, due to increasing capabilities in computational chemistry, it is now possible to ...
We have studied the adsorption of three organic molecules onto different surfaces of goethite α-FeO(...
The ability to control the binding of biological and organic molecules to a crystal surface is centr...
The availability of advanced nanotechnological methodologies (experimental and theoretical) has wi...
The role of mineral surfaces in the adsorption, transport, formation, and degradation of natural org...
Understanding and prediction of many natural and anthropogenic environmental processes ultimately de...
none3noThe ability to control the binding of biological and organic molecules to a crystal surface i...
In this study, classical molecular dynamics simulations have been used to understand the key interac...
The project objectives were to determine the nanoscale to molecular scale structure of the interface...
Precise structural studies of nano-crystalline minerals using diffraction techniques have been hinde...
Understanding and prediction of many natural and anthropogenic environmental processes ultimately de...
none3The great interest in minerals physico-chemical properties rises from their availability in nat...
The role of mineral surfaces in concentrating and facilitating the polymerisation of simple protobio...
The reactivity of calcite, one of the most abundant minerals in the earth’s crust, is determined by ...
Reactions at mineral surfaces are central to all geochemical processes. As minerals comprise the roc...
Information on the particle size and reactive surface area of natural samples and its interaction wi...
We have studied the adsorption of three organic molecules onto different surfaces of goethite α-FeO(...
The ability to control the binding of biological and organic molecules to a crystal surface is centr...
The availability of advanced nanotechnological methodologies (experimental and theoretical) has wi...
The role of mineral surfaces in the adsorption, transport, formation, and degradation of natural org...
Understanding and prediction of many natural and anthropogenic environmental processes ultimately de...
none3noThe ability to control the binding of biological and organic molecules to a crystal surface i...
In this study, classical molecular dynamics simulations have been used to understand the key interac...
The project objectives were to determine the nanoscale to molecular scale structure of the interface...
Precise structural studies of nano-crystalline minerals using diffraction techniques have been hinde...
Understanding and prediction of many natural and anthropogenic environmental processes ultimately de...
none3The great interest in minerals physico-chemical properties rises from their availability in nat...
The role of mineral surfaces in concentrating and facilitating the polymerisation of simple protobio...
The reactivity of calcite, one of the most abundant minerals in the earth’s crust, is determined by ...
Reactions at mineral surfaces are central to all geochemical processes. As minerals comprise the roc...
Information on the particle size and reactive surface area of natural samples and its interaction wi...
We have studied the adsorption of three organic molecules onto different surfaces of goethite α-FeO(...
The ability to control the binding of biological and organic molecules to a crystal surface is centr...
The availability of advanced nanotechnological methodologies (experimental and theoretical) has wi...