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Electrostatic gating and intercalation in 2D materials
The do** or the alteration of crystals with guest species to obtain desired properties has
long been a research frontier in materials science. However, the closely packed lattice …
long been a research frontier in materials science. However, the closely packed lattice …
Magnetism in two-dimensional van der Waals materials
The discovery of materials has often introduced new physical paradigms and enabled the
development of novel devices. Two-dimensional magnetism, which is associated with strong …
development of novel devices. Two-dimensional magnetism, which is associated with strong …
Gate-tunable room-temperature ferromagnetism in two-dimensional Fe3GeTe2
Materials research has driven the development of modern nano-electronic devices. In
particular, research in magnetic thin films has revolutionized the development of spintronic …
particular, research in magnetic thin films has revolutionized the development of spintronic …
Ferroelectrically tunable magnetic skyrmions in ultrathin oxide heterostructures
Magnetic skyrmions are topologically protected whirling spin texture. Their nanoscale
dimensions, topologically protected stability and solitonic nature, together are promising for …
dimensions, topologically protected stability and solitonic nature, together are promising for …
Endeavor of iontronics: from fundamentals to applications of ion‐controlled electronics
Iontronics is a newly emerging interdisciplinary concept which bridges electronics and
ionics, covering electrochemistry, solid‐state physics, electronic engineering, and biological …
ionics, covering electrochemistry, solid‐state physics, electronic engineering, and biological …
Electrolyte-based ionic control of functional oxides
C Leighton - Nature materials, 2019 - nature.com
The use of electrolyte gating to electrically control electronic, magnetic and optical properties
of materials has seen strong recent growth, driven by the potential of the many devices and …
of materials has seen strong recent growth, driven by the potential of the many devices and …
Proximitized materials
Advances in scaling down heterostructures and having an improved interface quality
together with atomically thin two-dimensional materials suggest a novel approach to …
together with atomically thin two-dimensional materials suggest a novel approach to …
Gate-tunable phase transitions in thin flakes of 1T-TaS2
The ability to tune material properties using gating by electric fields is at the heart of modern
electronic technology. It is also a driving force behind recent advances in two-dimensional …
electronic technology. It is also a driving force behind recent advances in two-dimensional …
Superconducting dome in a gate-tuned band insulator
A dome-shaped superconducting region appears in the phase diagrams of many
unconventional superconductors. In doped band insulators, however, reaching optimal …
unconventional superconductors. In doped band insulators, however, reaching optimal …
Suppression of Metal-Insulator Transition in VO2 by Electric Field–Induced Oxygen Vacancy Formation
Electrolyte gating with ionic liquids is a powerful tool for inducing novel conducting phases
in correlated insulators. An archetypal correlated material is vanadium dioxide (VO2), which …
in correlated insulators. An archetypal correlated material is vanadium dioxide (VO2), which …