Quantum chemistry meets one of its greatest challenges in the field of transition-metal compounds capable of fascinating chemical transformations. Complicated electronic structure and interesting chemistry are intimately connected, and the theoretical elucidation of such molecular processes requires computational procedures that are both feasible and accurate. In this review we elaborate on our recent work in the field
I will describe some of our recent progress and results in some long-standing challenges of quantum...
In the last 15 years, computational quantum chemistry has become an invaluable tool that supports th...
honors thesisCollege of ScienceChemistryMichael D. MorseMeasuring thermochemical and kinetic propert...
Accurate quantum computational chemistry has evolved dramatically. The size of molecular systems, wh...
A brief summary of the author’s research projects for deepening and extending the quantum principles...
In this talk, our efforts in understanding and controlling metal-ligand bonding will be presented, m...
Computational methods were used to analyse the interactions around the metal centres in three trans...
Quantum chemistry can today be employed to invent new molecules and explore unknown molecular bondin...
In the last two decades, considerable theoretical efforts have been made to develop suitable method...
Transition metals complexes (TMCs) express a variety of interesting physical properties brought abou...
Computational and theoretical chemistry provide fundamental insights into the structures, properties...
In recent years, there have been major advances in quantumchemistry methods, including their impleme...
Transition metal compounds are traditionally considered to be challenging for standard quantum chemi...
This thesis is concerned with two topics from the field of computational elec-tronic structure theor...
The aim of this work is to determine the coir^utationally optimal route to the reliable first princi...
I will describe some of our recent progress and results in some long-standing challenges of quantum...
In the last 15 years, computational quantum chemistry has become an invaluable tool that supports th...
honors thesisCollege of ScienceChemistryMichael D. MorseMeasuring thermochemical and kinetic propert...
Accurate quantum computational chemistry has evolved dramatically. The size of molecular systems, wh...
A brief summary of the author’s research projects for deepening and extending the quantum principles...
In this talk, our efforts in understanding and controlling metal-ligand bonding will be presented, m...
Computational methods were used to analyse the interactions around the metal centres in three trans...
Quantum chemistry can today be employed to invent new molecules and explore unknown molecular bondin...
In the last two decades, considerable theoretical efforts have been made to develop suitable method...
Transition metals complexes (TMCs) express a variety of interesting physical properties brought abou...
Computational and theoretical chemistry provide fundamental insights into the structures, properties...
In recent years, there have been major advances in quantumchemistry methods, including their impleme...
Transition metal compounds are traditionally considered to be challenging for standard quantum chemi...
This thesis is concerned with two topics from the field of computational elec-tronic structure theor...
The aim of this work is to determine the coir^utationally optimal route to the reliable first princi...
I will describe some of our recent progress and results in some long-standing challenges of quantum...
In the last 15 years, computational quantum chemistry has become an invaluable tool that supports th...
honors thesisCollege of ScienceChemistryMichael D. MorseMeasuring thermochemical and kinetic propert...