Orientation Engineering of MXene Flakes
Orientation engineering of MXene flakes refers to the transformation of disordered MXene flakes into ordered architectures with optimized multiphysical transport properties. Focusing on this topic, this review outlines key principles, characterization, fabrication strategies, and advanced applications of oriented MXene structures.
Yizhou Wang +7 more
wiley +1 more source
NiS <sub><i>x</i></sub> /NiO/MoS<sub>2</sub> heterostructure for enhanced hydrogen evolution in acidic media and supercapacitor electrode applications. [PDF]
Saleem S +4 more
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Dynamic Curvature–Bounded Beam Propagation in a GaN/AlGaN Heterostructure: A Dual–ULF Demonstration
Hernandez, William
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Magnetotransport, structural and optical characterization of p-type modulation doped heterostructures with high Ge content Si[subscript 1-x]Ge[subscript x] channel grown by SS-MBE on Si[subscript 1-y]Ge[subscript y]/Si(001) virtual substrates [PDF]
M. Myronov
openalex
Erratum: ‘‘Second subband population in δ-doped Al0.48In0.52As/Ga0.47In0.53As heterostructures’’ [Appl. Phys. Lett. 66, 754 (1995)] [PDF]
Ikai Lo +5 more
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Quantum anomalous Hall heterostructures [PDF]
He, Ke, Xue, Qi-Kun
openaire +2 more sources
ABSTRACT This research focused on characterizing graphitic carbon nitride (g‐C3N4) nanocomposites incorporated with ZnO and Ag2O nanoparticles, and carrageenan to remove heavy metals. The ZnO/Ag2O@ g‐C3N4 and ZnO/Ag2O/g‐C3N4@Carr nanocomposites demonstrated thermal stability of 97.40% (108.81°C) and 82.80% (188.99°C) for TGA.
Feziwe B. Mamba +2 more
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Targeted reactant activation and spatial charge separation for efficient photocatalytic C(sp<sup>3</sup>)-H bond oxidation. [PDF]
Chen T +11 more
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Tin Oxide‐Anchored MXene Composites for Enhanced Hydrogen Evolution in Alkaline Media
The schematic illustrates a SnO2/MXene heterostructure for efficient hydrogen evolution. SnO2 nanoparticles are uniformly anchored on conductive MXene nanosheets, enhancing charge transfer and catalytic activity. The MXene substrate provides high electrical conductivity and abundant active sites, while SnO2 facilitates water adsorption and dissociation.
Pratik Shinde +8 more
wiley +1 more source

