International audienceBirnessite nanosheets (δ-MnO2) are key reactive nanoparticles that regulate metal cycling in terrestrial and marine settings, yet there is no molecular explanation for the sorption selectivity of metals which controls their enrichment. This fundamental question was addressed by optimizing the structure of Ni, Cu, Zn, and Pb surface complexes on δ-MnO2 and by calculating the Gibbs free-energy change (ΔG) of the sorption reactions with density functional theory. The sorption selectivity follows the order Pb > Cu > Ni > Zn in good agreement with experimental data. Cu, Ni, and Zn bind preferentially to layer edges at low surface coverage forming double-edge-sharing (DES) complexes, whereas Pb binds extensively with high se...
Iron oxides are abundant in natural waters and soils and have high capacities for scavenging Pb(II) ...
Thesis (Ph.D.)--University of Washington, 2022Heterogeneous catalysts consisting of transition metal...
International audienceIn surficial environments, the fate of many trace metals is influenced by thei...
International audienceBirnessite nanosheets (δ-MnO2) are key reactive nanoparticles that regulate me...
Natural hexagonal birnessite is a poorly-crystalline layer type Mn(IV) oxide precipitated by bacteri...
[[abstract]]Binuclear metal centers in metalloenzymes are involved in a number of hydrolytic, hydrat...
A synergistic experimental-computational approach was used to study the molecular-scale mechanisms o...
Small molecules may adsorb strongly in metal–organic frameworks (MOFs) through interactions with und...
The surface complexation modeling of metal adsorption to birnessites is in its infancy compared to t...
The surface complexation modeling of metal adsorption to birnessites is in its infancy compared to t...
International audiencePhyllomanganates of the birnessite family are the most abundant manganese oxid...
International audienceThe local structures of divalent Zn, Cu, and Pb sorbed on the phyllomanganate ...
Ce-bastnäsite is the single largest mineral source for light rare-earth elements. In view of the gro...
Iron oxides are abundant in natural waters and soils and have high capacities for scavenging Pb(II) ...
Thesis (Ph.D.)--University of Washington, 2022Heterogeneous catalysts consisting of transition metal...
International audienceIn surficial environments, the fate of many trace metals is influenced by thei...
International audienceBirnessite nanosheets (δ-MnO2) are key reactive nanoparticles that regulate me...
Natural hexagonal birnessite is a poorly-crystalline layer type Mn(IV) oxide precipitated by bacteri...
[[abstract]]Binuclear metal centers in metalloenzymes are involved in a number of hydrolytic, hydrat...
A synergistic experimental-computational approach was used to study the molecular-scale mechanisms o...
Small molecules may adsorb strongly in metal–organic frameworks (MOFs) through interactions with und...
The surface complexation modeling of metal adsorption to birnessites is in its infancy compared to t...
The surface complexation modeling of metal adsorption to birnessites is in its infancy compared to t...
International audiencePhyllomanganates of the birnessite family are the most abundant manganese oxid...
International audienceThe local structures of divalent Zn, Cu, and Pb sorbed on the phyllomanganate ...
Ce-bastnäsite is the single largest mineral source for light rare-earth elements. In view of the gro...
Iron oxides are abundant in natural waters and soils and have high capacities for scavenging Pb(II) ...
Thesis (Ph.D.)--University of Washington, 2022Heterogeneous catalysts consisting of transition metal...
International audienceIn surficial environments, the fate of many trace metals is influenced by thei...