Area of research
Inorganic Chemistry · Materials Chemistry
Research interest
Research focused on Uranyl and Boron, with related work in Aeration, Tetrahedron, Infiltration (HVAC). Notable publications include 'Effect of hydraulic loading rate on pollutant removal efficiency in subsurface infiltration system under intermittent operation and micro-power aeration', 'High Structural Complexity of Potassium Uranyl Borates Derived from High-Temperature/High-Pressure Reactions', and 'Highly Distorted Uranyl Ion Coordination and One/Two-Dimensional Structural Relationship in the Ba 2 [UO 2 (TO 4 ) 2 ] (T = P, As) System: An Experimental and Computational Study'.
Effect of hydraulic loading rate on pollutant removal efficiency in subsurface infiltration system under intermittent operation and micro-power aeration
Highly Distorted Uranyl Ion Coordination and One/Two-Dimensional Structural Relationship in the Ba<sub>2</sub>[UO<sub>2</sub>(TO<sub>4</sub>)<sub>2</sub>] (T = P, As) System: An Experimental and Computational Study
ChemInform Abstract: Highly Distorted Uranyl Ion Coordination and One/Two‐Dimensional Structural Relationship in the Ba<sub>2</sub>[UO<sub>2</sub>(TO<sub>4</sub>)<sub>2</sub>] (T: P, As) System: An Experimental and Computational Study.
High Structural Complexity of Potassium Uranyl Borates Derived from High-Temperature/High-Pressure Reactions
Novel Fundamental Building Blocks and Site Dependent Isomorphism in the First Actinide Borophosphates
A new low temperature route to uranyl borates with structural variations
Substitution of IO<sub>3</sub> <sup> −</sup>, IO<sub>4</sub> <sup>−</sup>, SeO<sub>3</sub> 2<sup>−</sup>, and SeO<sub>4</sub> <sup>2−</sup> for CO<sub>3</sub> <sup>2−</sup> in Na<sub>4</sub>[UO<sub>2</sub>(CO<sub>3</sub>)<sub>3</sub>]