Stoichiometric Cr2Se3 single crystals are particular layer-structured antiferromagnets, which possess a noncollinear spin configuration, weak ferromagnetic moments, moderate magnetoresistance (MR ∼14.3%), and poor metallic conductivity below the antiferromagnetic phase transition. Here, we report an interesting \u3e16 000% colossal magnetoresistance (CMR) effect in Ti (1.5 atomic percent) lightly doped Cr2Se3 single crystals. Such a CMR is approximately 1143 times larger than that of the stoichiometric Cr2Se3 crystals and is rarely observed in layered antiferromagnets and is attributed to the frustrated spin configuration. Moreover, the Ti doping not only dramatically changes the electronic conductivity of the Cr2Se3 crystal from a bad meta...
Ferromagnetically doped topological insulators with broken time-reversal symmetry are a prerequisite...
We report the magnetotransport properties of individual Bi2Se3 nanoplates. The carrier Hall mobility...
Epitaxial Cr-doped Ti2O3 films show giant negative magnetoresistance up to -365% at 2 K. The resisti...
The area of spintronics has witnessed tremendous progress in the 21st century. During the 1980s and ...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
We have studied the effect of substitution of Cr in metastable 1T -CrSe2 by Ti and V on its structu...
Magnetic doping is the most common method for breaking time-reversal-symmetry surface states of topo...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
A positive colossal magnetoresistance (CMR) of 160% has been observed in Tb5Si2.2Ge1.8 with the magn...
International audienceWe have studied the effect of substitution of Cr in metastable 1T -CrSe2 by Ti...
We report on the observation of ferromagnetism in epitaxial thin films of the topological insulator ...
Progress in magnetoelectric materials is hindered by apparently contradictory requirements for time‐...
Colossal magnetoresistance (CMR) refers to a large change in electrical conductivity induced by a ma...
The crystallographic, magnetic, and transport properties of the van der Waals bonded, layered compou...
We report structural, magnetic, and magnetotransport properties of the two-dimensional chromium sulf...
Ferromagnetically doped topological insulators with broken time-reversal symmetry are a prerequisite...
We report the magnetotransport properties of individual Bi2Se3 nanoplates. The carrier Hall mobility...
Epitaxial Cr-doped Ti2O3 films show giant negative magnetoresistance up to -365% at 2 K. The resisti...
The area of spintronics has witnessed tremendous progress in the 21st century. During the 1980s and ...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
We have studied the effect of substitution of Cr in metastable 1T -CrSe2 by Ti and V on its structu...
Magnetic doping is the most common method for breaking time-reversal-symmetry surface states of topo...
Magnetic layered van der Waals crystals are an emerging class of materials giving access to new phys...
A positive colossal magnetoresistance (CMR) of 160% has been observed in Tb5Si2.2Ge1.8 with the magn...
International audienceWe have studied the effect of substitution of Cr in metastable 1T -CrSe2 by Ti...
We report on the observation of ferromagnetism in epitaxial thin films of the topological insulator ...
Progress in magnetoelectric materials is hindered by apparently contradictory requirements for time‐...
Colossal magnetoresistance (CMR) refers to a large change in electrical conductivity induced by a ma...
The crystallographic, magnetic, and transport properties of the van der Waals bonded, layered compou...
We report structural, magnetic, and magnetotransport properties of the two-dimensional chromium sulf...
Ferromagnetically doped topological insulators with broken time-reversal symmetry are a prerequisite...
We report the magnetotransport properties of individual Bi2Se3 nanoplates. The carrier Hall mobility...
Epitaxial Cr-doped Ti2O3 films show giant negative magnetoresistance up to -365% at 2 K. The resisti...