A comprehensive suite of X-ray absorption spectroscopies supported by computational predictions have been used to characterize the metal-ligand bonding in a variety of transition metal species. By quantifying Cu covalency through Cu L2,3-edge spectroscopy, complexes containing the formal Cu3+ oxidation state have been shown to contain predominantly ligand-centered frontier molecular orbitals, representing a physically more reduced Cu center and electrophilic ligand character, borne out in the reactivities observed. Cu K-edge XAS was similarly shown to not be diagnostic in determining the Cu3+ oxidation state. Cu 3d covalency values calculated by density functional theory, shown to well reproduce those determined experimentally, were then us...
Transition metals in inorganic systems and metalloproteins can occur in different oxidation states, ...
Transition metals in inorganic systems and metalloproteins can occur in different oxidation states, ...
Glaser T, Hedman B, Hodgson KO, Solomon EI. Ligand K-edge X-ray absorption spectroscopy: A direct pr...
X-ray spectroscopic methods were employed to study the electronic structure of transition metal comp...
A series of organometallic copper complexes in formal oxidation states ranging from 1 to 3 have be...
A series of organometallic copper complexes in formal oxidation states ranging from 1 to 3 have be...
In this research, X-ray spectroscopic techniques in combination with electronic structure calculatio...
A series of organometallic copper complexes in formal oxidation states ranging from 1 to 3 have be...
Catalysts based on the first-row (3d) transition metals are commonly seen in chemical and biological...
Catalysts based on the first-row (3d) transition metals are commonly seen in chemical and biological...
Catalysts based on the first-row (3d) transition metals are commonly seen in chemical and biological...
X-ray absorption spectroscopy (XAS) at the Cu K-edge is an important tool for probing the properties...
Part A: In order to elucidate the nature of the transitions involved in the x-ray absorption edge of...
Transition metals in inorganic systems and metalloproteins can occur in different oxidation states, ...
Transition metals in inorganic systems and metalloproteins can occur in different oxidation states, ...
Transition metals in inorganic systems and metalloproteins can occur in different oxidation states, ...
Transition metals in inorganic systems and metalloproteins can occur in different oxidation states, ...
Glaser T, Hedman B, Hodgson KO, Solomon EI. Ligand K-edge X-ray absorption spectroscopy: A direct pr...
X-ray spectroscopic methods were employed to study the electronic structure of transition metal comp...
A series of organometallic copper complexes in formal oxidation states ranging from 1 to 3 have be...
A series of organometallic copper complexes in formal oxidation states ranging from 1 to 3 have be...
In this research, X-ray spectroscopic techniques in combination with electronic structure calculatio...
A series of organometallic copper complexes in formal oxidation states ranging from 1 to 3 have be...
Catalysts based on the first-row (3d) transition metals are commonly seen in chemical and biological...
Catalysts based on the first-row (3d) transition metals are commonly seen in chemical and biological...
Catalysts based on the first-row (3d) transition metals are commonly seen in chemical and biological...
X-ray absorption spectroscopy (XAS) at the Cu K-edge is an important tool for probing the properties...
Part A: In order to elucidate the nature of the transitions involved in the x-ray absorption edge of...
Transition metals in inorganic systems and metalloproteins can occur in different oxidation states, ...
Transition metals in inorganic systems and metalloproteins can occur in different oxidation states, ...
Transition metals in inorganic systems and metalloproteins can occur in different oxidation states, ...
Transition metals in inorganic systems and metalloproteins can occur in different oxidation states, ...
Glaser T, Hedman B, Hodgson KO, Solomon EI. Ligand K-edge X-ray absorption spectroscopy: A direct pr...