By substituting one Cr3+(s=3/2) with Cd2+(s=0) in molecular octanuclear rings, a diluted ensemble of identical nanomagnets with a S=3/2 ground state, weakly split in zero field, is obtained. The lattice contribution and the essential parameters of the spin Hamiltonian of these uncompensated antiferromagnetic cyclic spin systems are determined by fitting specific heat data between 0.4 and 20 K in magnetic fields up to 7 T. Different entropy contributions are evaluated and results suggest a possible way of engineering molecular magnets to exploit low temperature magnetocaloric effect
We investigate the low-temperature magnetic and entanglement properties of a series of molecular Cr2...
We investigate the role of topology and distortions in the quantum dynamics of magnetic molecules, u...
In this paper we review our results of comprehensive study of molecular nanomagnets recently synthes...
By substituting one Cr3+(s=3/2) with Cd2+(s=0) in molecular octanuclear rings, a diluted ensemble of...
Schnack J, Schmid R, Richter J. Enhanced magnetocaloric effect in frustrated magnetic molecules with...
Sharples JW, Collison D, McInnes EJL, Schnack J, Palacios E, Evangelisti M. Quantum signatures of a ...
An unusually large magnetocaloric effect for the temperature region below 10 K is found for the Fe-1...
Resumen del trabajo presentado al Congreso Multiscale phenomena in molecular matter, celebrado en Kr...
We study the magnetothermal properties of magnetically isotropic high-spin molecular nanomagnets con...
We report the synthesis and structure of a molecular {Gd7} cage of the formula (iPr2NH2)6[Gd7(μ3-OH)...
Molecular magnets show many properties not met in conventional metallic magnetic materials, i.e. low...
Molecular nanomagnets are spin clusters whose topology and magnetic interactions can be modulated at...
Frustrated magnetic molecules are promising alternatives to refrigerant materials for low temperatur...
Beckmann C, Ehrens J, Schnack J. Rotational magnetocaloric effect of anisotropic giant-spin molecula...
Magnetic materials in which the fundamental building block is molecular have attracted a great deal ...
We investigate the low-temperature magnetic and entanglement properties of a series of molecular Cr2...
We investigate the role of topology and distortions in the quantum dynamics of magnetic molecules, u...
In this paper we review our results of comprehensive study of molecular nanomagnets recently synthes...
By substituting one Cr3+(s=3/2) with Cd2+(s=0) in molecular octanuclear rings, a diluted ensemble of...
Schnack J, Schmid R, Richter J. Enhanced magnetocaloric effect in frustrated magnetic molecules with...
Sharples JW, Collison D, McInnes EJL, Schnack J, Palacios E, Evangelisti M. Quantum signatures of a ...
An unusually large magnetocaloric effect for the temperature region below 10 K is found for the Fe-1...
Resumen del trabajo presentado al Congreso Multiscale phenomena in molecular matter, celebrado en Kr...
We study the magnetothermal properties of magnetically isotropic high-spin molecular nanomagnets con...
We report the synthesis and structure of a molecular {Gd7} cage of the formula (iPr2NH2)6[Gd7(μ3-OH)...
Molecular magnets show many properties not met in conventional metallic magnetic materials, i.e. low...
Molecular nanomagnets are spin clusters whose topology and magnetic interactions can be modulated at...
Frustrated magnetic molecules are promising alternatives to refrigerant materials for low temperatur...
Beckmann C, Ehrens J, Schnack J. Rotational magnetocaloric effect of anisotropic giant-spin molecula...
Magnetic materials in which the fundamental building block is molecular have attracted a great deal ...
We investigate the low-temperature magnetic and entanglement properties of a series of molecular Cr2...
We investigate the role of topology and distortions in the quantum dynamics of magnetic molecules, u...
In this paper we review our results of comprehensive study of molecular nanomagnets recently synthes...