International audienceHere, we report a theoretical investigation of the electronic and magnetic properties of two oxohalide compounds, namely Cu3(SeO3)2Cl2 and Cu3(TeO3)2Br2, using Density Functional Theory (DFT). These layered systems are characterized by two inequivalent Cu sites, with CuO4 and CuO4X (X = Cl, Br) environments, respectively. A new magnetic model is proposed through the calculation of the magnetic exchange couplings. Our study discloses the participation of the Se and Te lone-pairs to the long-range magnetic order, providing potential key informations for future chemical design of original magnetic systems
We report a detailed study of the magnetic properties of the buckled kagome compound Cu3Y(SeO3)2O2Cl...
We have investigated the magnetic properties of a recently synthesized dinuclear complex, [Cu2(μ-OAc...
doi:10.1088/1367-2630/11/11/113034 Abstract. A microscopic magnetic model for the spin-1/2 Heisenber...
We present first-principles density functional theory (DFT) calculations within the generalized grad...
Hybrid organic-inorganic compounds are an intriguing class of materials that have been experimentall...
Hybrid organic–inorganic compounds are an intriguing class of materials that have been experimentall...
The electronic properties of copper oxides represent an historical challenge for first-principles ca...
Hybrid organic-inorganic compounds are an intriguing class of materials that have been experimentall...
The present thesis is devoted to the study of low dimensional quantum spin systems and low dimension...
The magnetic exchange interactions for five representative triangular Copper(II) complexes: antiferr...
The collaboration between the University of St Andrews and Moscow State University was funded by a R...
The synthesis of one-dimensional, molecule-based magnets and the investigation of their structure an...
First, the geometrical structure, energy band structure, density of states, and overlap population o...
International audienceIn this study, we theoretically investigate the structural, electronic and mag...
The electronic structure of CuCl and CuBr compounds and their solid solutions CuCl1–xBrx (x = 0.25, ...
We report a detailed study of the magnetic properties of the buckled kagome compound Cu3Y(SeO3)2O2Cl...
We have investigated the magnetic properties of a recently synthesized dinuclear complex, [Cu2(μ-OAc...
doi:10.1088/1367-2630/11/11/113034 Abstract. A microscopic magnetic model for the spin-1/2 Heisenber...
We present first-principles density functional theory (DFT) calculations within the generalized grad...
Hybrid organic-inorganic compounds are an intriguing class of materials that have been experimentall...
Hybrid organic–inorganic compounds are an intriguing class of materials that have been experimentall...
The electronic properties of copper oxides represent an historical challenge for first-principles ca...
Hybrid organic-inorganic compounds are an intriguing class of materials that have been experimentall...
The present thesis is devoted to the study of low dimensional quantum spin systems and low dimension...
The magnetic exchange interactions for five representative triangular Copper(II) complexes: antiferr...
The collaboration between the University of St Andrews and Moscow State University was funded by a R...
The synthesis of one-dimensional, molecule-based magnets and the investigation of their structure an...
First, the geometrical structure, energy band structure, density of states, and overlap population o...
International audienceIn this study, we theoretically investigate the structural, electronic and mag...
The electronic structure of CuCl and CuBr compounds and their solid solutions CuCl1–xBrx (x = 0.25, ...
We report a detailed study of the magnetic properties of the buckled kagome compound Cu3Y(SeO3)2O2Cl...
We have investigated the magnetic properties of a recently synthesized dinuclear complex, [Cu2(μ-OAc...
doi:10.1088/1367-2630/11/11/113034 Abstract. A microscopic magnetic model for the spin-1/2 Heisenber...