4 citations · 9 across the 5 of their papers we have counts for
5 papers
Chemical Engineering of Altermagnetism in Two-Dimensional Metal-Organic Frameworks
Diego López-Alcalá, Alberto M. Ruiz, Andrei Shumilin +1
Altermagnetism represents a novel class of collinear antiferromagnetism exhibiting non-relativistic spin splitting without net magnetization, driven by lattice symmetry rather than…
Confinement-Induced One-Dimensional Magnetism in CrSBr Chains via Carbon Nanotube Encapsulation
Diego López-Alcalá, Alberto M. Ruiz, Andrei Shumilin +1
Encapsulating low-dimensional magnetic materials within carbon nanotubes (CNTs) offers a compelling route to stabilize unconventional magnetic states and engineer quantum functiona…
Controlling Magnetism in the 2D van der Waals Antiferromagnet CrPS via Ion Intercalation
Alberto M. Ruiz, Diego López-Alcalá, Gonzalo Rivero-Carracedo +2
Two-dimensional van der Waals (vdW) magnetic materials are versatile platforms for tailoring electronic and magnetic properties, in which the insertion of chemical species into the…
One-Dimensional Materials Supported in Two-Dimensional van der Waals Metal-Organic Frameworks with Optical Anisotropy Switching via Twist-Engineering
Eleni C. Mazarakioti, Carla Boix-Constant, Iván Gómez-Muñoz +10
Van der Waals (vdW) materials provide a platform to study and control the physical properties of low-dimensional materials. While strategies developed for two-dimensional (2D) crys…
Tunable Itinerant Ferromagnetism in the Two-Dimensional FePdTe Hosting 1D Spin Chains
Alberto M. Ruiz, Andrei Shumilin, Sourav Dey +2
One-dimensional (1D) magnetism offers unidirectional spin interactions that allow unique tunable properties and unconventional spin phenomena. However, it often suffers from poor s…