The most common motif in uranium chemistry is the d0f0 uranyl ion [UO2]21 in which the oxo groups are rigorously linear and inert. Alternative geometries, such as the cis-uranyl, have been identified theoretically and implicated in oxo-atom transfer reactions that are relevant to environmental speciation and nuclear waste remediation. Single electron reduction is now known to impart greater oxo-group reactivity, but with retention of the linear OUO motif, and reactions of the oxo groups to form new covalent bonds remain rare. Here, we describe the synthesis, structure, reactivity and magnetic properties of a binuclear uranium–oxo complex. Formed through a combination of reduction and oxo-silylation and migration from a trans to a cis positi...
Uranyl ions, {UO2}n+ (n = 1, 2), display trans, strongly covalent, and chemically robust U-O multipl...
Oxidation of our previously reported uranium(V) oxo complexes, supported by the chelating (<sup>R</...
The uranyl ion, [UVIO2]2+, possesses rigorously trans, strongly covalent, and chemically robust U-ox...
The understanding of reduction and remediation of uranyl (UO22+) in the environment is a crucial con...
The most common motif in uranium chemistry is the linear d0f0 uranyl ion [UO2]2+. The strong, covale...
Chapter one introduces uranium oxo chemistry with a focus on the structure, oxogroup reactivity and...
International audienceUranyl complexes of a large, compartmental N8-macrocycle adopt a rigid, “Pacma...
Uranyl complexes of a large, compartmental N8-macrocycle adopt a rigid, “Pacman” geometry that stabi...
The effects of the ligand field are generally on the same order of magnitude as spin-orbit coupling ...
The effects of the ligand field are generally on the same order of magnitude as spin-orbit coupling ...
The synthesis and molecular structures of a U(V) neutral terminal oxo complex and a U(V) sodium uran...
Unlike their transition-metal analogues, the oxo groups of the uranyl dication, [UO2]2+, which has a...
International audienceThe new homoleptic ate U(III) siloxide [K(18c6)][U(OSi(OtBu)3)4] 2 was prepare...
On the basis of relativistic density functional theory calculations, homo- and heterovalent binuclea...
International audienceThe chemistry of uranium has atlracted considerable attention in industrial an...
Uranyl ions, {UO2}n+ (n = 1, 2), display trans, strongly covalent, and chemically robust U-O multipl...
Oxidation of our previously reported uranium(V) oxo complexes, supported by the chelating (<sup>R</...
The uranyl ion, [UVIO2]2+, possesses rigorously trans, strongly covalent, and chemically robust U-ox...
The understanding of reduction and remediation of uranyl (UO22+) in the environment is a crucial con...
The most common motif in uranium chemistry is the linear d0f0 uranyl ion [UO2]2+. The strong, covale...
Chapter one introduces uranium oxo chemistry with a focus on the structure, oxogroup reactivity and...
International audienceUranyl complexes of a large, compartmental N8-macrocycle adopt a rigid, “Pacma...
Uranyl complexes of a large, compartmental N8-macrocycle adopt a rigid, “Pacman” geometry that stabi...
The effects of the ligand field are generally on the same order of magnitude as spin-orbit coupling ...
The effects of the ligand field are generally on the same order of magnitude as spin-orbit coupling ...
The synthesis and molecular structures of a U(V) neutral terminal oxo complex and a U(V) sodium uran...
Unlike their transition-metal analogues, the oxo groups of the uranyl dication, [UO2]2+, which has a...
International audienceThe new homoleptic ate U(III) siloxide [K(18c6)][U(OSi(OtBu)3)4] 2 was prepare...
On the basis of relativistic density functional theory calculations, homo- and heterovalent binuclea...
International audienceThe chemistry of uranium has atlracted considerable attention in industrial an...
Uranyl ions, {UO2}n+ (n = 1, 2), display trans, strongly covalent, and chemically robust U-O multipl...
Oxidation of our previously reported uranium(V) oxo complexes, supported by the chelating (<sup>R</...
The uranyl ion, [UVIO2]2+, possesses rigorously trans, strongly covalent, and chemically robust U-ox...