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Direct laser writing: from materials synthesis and conversion to electronic device processing
Abstract Direct Laser Writing (DLW) has been increasingly selected as a microfabrication
route for efficient, cost‐effective, high‐resolution material synthesis and conversion …
route for efficient, cost‐effective, high‐resolution material synthesis and conversion …
Manipulating polaritons at the extreme scale in van der Waals materials
Polaritons, originating from the interactions between photons and material excitations, have
attracted attention because of their strong field compression and deeply subdiffractional …
attracted attention because of their strong field compression and deeply subdiffractional …
Engineering van der Waals materials for advanced metaphotonics
The outstanding chemical and physical properties of 2D materials, together with their
atomically thin nature, make them ideal candidates for metaphotonic device integration and …
atomically thin nature, make them ideal candidates for metaphotonic device integration and …
Ultraviolet graphene ultranarrow absorption engineered by lattice plasmon resonance
We numerically demonstrate an ultraviolet graphene ultranarrow absorption in a hybrid
graphene-metal structure. The full-width at half maximum of the absorption band being 9 nm …
graphene-metal structure. The full-width at half maximum of the absorption band being 9 nm …
Low-frequency and Moiré–Floquet engineering: A review
We review recent work on low-frequency Floquet engineering and its application to quantum
materials driven by light, focusing on van der Waals systems hosting Moiré superlattices …
materials driven by light, focusing on van der Waals systems hosting Moiré superlattices …
Uniaxial strain-induced stacking order change in trilayer graphene
The layer stacking order in two-dimensional heterostructures, like graphene, affects their
physical properties and potential applications. Trilayer graphene, specifically ABC-trilayer …
physical properties and potential applications. Trilayer graphene, specifically ABC-trilayer …
Experimental observation of ABCB stacked tetralayer graphene
In tetralayer graphene, three inequivalent layer stackings should exist; however, only
rhombohedral (ABCA) and Bernal (ABAB) stacking have so far been observed. The three …
rhombohedral (ABCA) and Bernal (ABAB) stacking have so far been observed. The three …
Heterogeneous self-healing assembly of MXene and graphene oxide enables producing free-standing and self-reparable soft electronics and robots
JN Ma, YL Zhang, YQ Liu, DD Han, JW Mao, JR Zhang… - Science Bulletin, 2022 - Elsevier
Self-healing materials (SHMs) with unique mechanical and electronic properties are
promising for self-reparable electronics and robots. However, the self-healing ability of …
promising for self-reparable electronics and robots. However, the self-healing ability of …
[HTML][HTML] Insight into the underlying competitive mechanism for the shift of the charge neutrality point in a trilayer-graphene field-effect transistor
T Huang, J Ding, Z Liu, R Zhang, BL Zhang, K **ong… - Escience, 2022 - Elsevier
Layer-number modulation in graphene has become a recent focus of research due to the
superior degree of freedom that can be achieved in terms of magic-angle, wettability …
superior degree of freedom that can be achieved in terms of magic-angle, wettability …
Optical Modification of Two-Dimensional Materials: From Atomic to Electronic Scale
Two-dimensional (2D) materials have attracted much attention because of their atomic-thin
thickness and unique properties, such as high binding energy, tunable band gap, and new …
thickness and unique properties, such as high binding energy, tunable band gap, and new …