Area of research
Materials Chemistry · Physical and Theoretical Chemistry
Research interest
Research interests include Crystallization and Solubility Studies, X-ray Diffraction in Crystallography, Crystallography and molecular interactions, and Magnetism in coordination complexes.
Cobalt-catalysed alkene hydronitration enabled by anomeric nitroamide
Dipolar Coupling as a Mechanism for Fine Control of Magnetic States in ErCOT-Alkyl Molecular Magnets
Genuine carbene versus carbene‐like reactivity
Palladium Bisphosphine Monoxide Complexes: Synthesis, Scope, Mechanism, and Catalytic Relevance
A crystalline doubly oxidized carbene
Electrochemical Cycling of Redox-Active Boron Cluster-Based Materials in the Solid State
Structurally Diverse Bench‐Stable Nickel(0) Pre‐Catalysts: A Practical Toolkit for In Situ Ligation Protocols**
Low-valent tungsten redox catalysis enables controlled isomerization and carbonylative functionalization of alkenes
Re<sup>I</sup> Tricarbonyl Complexes as Coordinate Covalent Inhibitors for the SARS‐CoV‐2 Main Cysteine Protease
Icosahedral <i>m</i> -Carboranes Containing Exopolyhedral B–Se and B–Te Bonds
Influence of Carbene and Phosphine Ligands on the Catalytic Activity of Gold Complexes in the Hydroamination and Hydrohydrazination of Alkynes
Chirality control in white-light emitting 2D perovskites
Chemical Diversity in Lead-Free, Layered Double Perovskites: A Combined Experimental and Computational Approach
Tunable Metal Oxide Frameworks via Coordination Assembly of Preyssler-Type Molecular Clusters
Optical, Electronic, and Magnetic Engineering of ⟨111⟩ Layered Halide Perovskites
Copper(I) and gold(I) thiolate precursors to bimetallic nanoparticles
Spectroscopic Evidence for a Monomeric Copper(I) Hydride and Crystallographic Characterization of a Monomeric Silver(I) Hydride
Thiocyanate-Ligated Heterobimetallic {PtM} Lantern Complexes Including a Ferromagnetically Coupled 1D Coordination Polymer