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In aticle number 2004683, Ariando Ariando and co‐workers report that topological Hall effect is found in a CaMnO3/CaIrO3/CaMnO3//LaAlO3(001) heterostructure, which indicates the presence of magnetic Skyrmions entailing the charge‐transfer induced magnetic superexchange. Thickness variations and atomic structure analyses suggest that the Dzyaloshinskii–Moriya interaction originates from the top CaMnO...
Exploring exotic interface magnetism due to charge transfer and strong spin‐orbit coupling has profound application in the future development of spintronic memory. Here, the emergence and tuning of topological Hall effect (THE) from a CaMnO3/CaIrO3/CaMnO3 trilayer structure are studied in detail, which suggests the presence of magnetic Skyrmion‐like bubbles. First, by tilting the magnetic field direction,...
Charge separation and transfer at the interface between two materials play a significant role in various atomic-scale processes and energy conversion systems. In this review, we present the mechanism and outcome of charge transfer in TiO2, which is extensively explored for photocatalytic applications in the field of environmental science. We list several experimental and computational methods to estimate...
Two-dimensional layered materials attract much attention due to their outstanding intrinsic properties and wide applications. In this work, the mechanical and electronic properties of monolayer MoS2 on monolayer gray arsenic (g-As) substrates are studied by first-principles calculations. Results indicate that both g-As and MoS2 undergo small corrugations when monolayer MoS2 is bonded to g-As. The...
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