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Applications of graphene in five senses, nervous system, and artificial muscles
Graphene remains of great interest in biomedical applications because of biocompatibility.
Diseases relating to human senses interfere with life satisfaction and happiness. Therefore …
Diseases relating to human senses interfere with life satisfaction and happiness. Therefore …
Advance in two-dimensional twisted moiré materials: Fabrication, properties, and applications
Abstract Two-dimensional (2D) twisted moiré materials, a new class of van der Waals (vdW)
layered heterostructures with different twist angles between neighboring layers, have …
layered heterostructures with different twist angles between neighboring layers, have …
Local atomic stacking and symmetry in twisted graphene trilayers
Moiré superlattices formed by twisting trilayers of graphene are a useful model for studying
correlated electron behaviour and offer several advantages over their formative bilayer …
correlated electron behaviour and offer several advantages over their formative bilayer …
Untwisting moiré physics: Almost ideal bands and fractional Chern insulators in periodically strained monolayer graphene
Moiré systems have emerged in recent years as a rich platform to study strong correlations.
Here, we will propose a simple, experimentally feasible setup based on periodically strained …
Here, we will propose a simple, experimentally feasible setup based on periodically strained …
Many-body ground states from decomposition of ideal higher Chern bands: Applications to chirally twisted graphene multilayers
Motivated by the higher Chern bands of twisted graphene multilayers, we consider flat
bands with arbitrary Chern number C with ideal quantum geometry. While C> 1 bands differ …
bands with arbitrary Chern number C with ideal quantum geometry. While C> 1 bands differ …
Topological flat bands in rhombohedral tetralayer and multilayer graphene on hexagonal boron nitride moiré superlattices
We show that rhombohedral four-layer graphene (4LG) nearly aligned with a hexagonal
boron nitride (hBN) substrate often develops nearly flat isolated low-energy bands with …
boron nitride (hBN) substrate often develops nearly flat isolated low-energy bands with …
Carbon do** and bridging oxygen benefit for g-C3N4 to photocatalytic H2 production from methanol/water splitting: Experiments and theoretical calculations
Y Zhang, J Luan, P Li, L Jiang, H Yan, W Liu, Z Yan - Carbon, 2024 - Elsevier
Water-based homogeneous pre-assembly and thermal polycondensation were used to
prepare carbon-doped oxygen-bridged layer-twisted graphite carbon nitride (gC 3 N 4) …
prepare carbon-doped oxygen-bridged layer-twisted graphite carbon nitride (gC 3 N 4) …
Anomalous interfacial electron-transfer kinetics in twisted trilayer graphene caused by layer-specific localization
Interfacial electron-transfer (ET) reactions underpin the interconversion of electrical and
chemical energy. It is known that the electronic state of electrodes strongly influences ET …
chemical energy. It is known that the electronic state of electrodes strongly influences ET …
Electronic properties of twisted multilayer graphene
Twisted bilayer graphene displays many fascinating properties that can be tuned by varying
the relative angle (also called twist angle) between its layers. As a notable feature, both the …
the relative angle (also called twist angle) between its layers. As a notable feature, both the …
Coupled surface-internal structural engineering in the skeleton of graphite carbon nitride for efficient photocatalytic hydrogen production
Y Zhang, J Luan, L Jiang, W Liu, Z Yan, Y Bai - International Journal of …, 2024 - Elsevier
The enhanced driving force of charge carriers is crucial for improving the efficiency of
photocatalytic hydrogen evolution of graphite carbon nitride (CN). N vacancy, grafted O and …
photocatalytic hydrogen evolution of graphite carbon nitride (CN). N vacancy, grafted O and …