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Recent advances in 2D material theory, synthesis, properties, and applications
Two-dimensional (2D) material research is rapidly evolving to broaden the spectrum of
emergent 2D systems. Here, we review recent advances in the theory, synthesis …
emergent 2D systems. Here, we review recent advances in the theory, synthesis …
Two dimensional Ir‐based catalysts for acidic OER
H Yu, J Ke, Q Shao - Small, 2023 - Wiley Online Library
Electrochemical water splitting in acidic media is one of the most promising hydrogen
production technologies, yet its practical applications in proton exchange membrane (PEM) …
production technologies, yet its practical applications in proton exchange membrane (PEM) …
Porous two-dimensional materials for photocatalytic and electrocatalytic applications
Two-dimensional materials with abundant in-plane pores (porous 2D materials) have shown
high performances as catalysts, especially for photocatalysis and electrocatalysis, owing to …
high performances as catalysts, especially for photocatalysis and electrocatalysis, owing to …
Engineering covalently bonded 2D layered materials by self-intercalation
Abstract Two-dimensional (2D) materials,,,–offer a unique platform from which to explore the
physics of topology and many-body phenomena. New properties can be generated by filling …
physics of topology and many-body phenomena. New properties can be generated by filling …
Epitaxial growth of inch-scale single-crystal transition metal dichalcogenides through the patching of unidirectionally orientated ribbons
Abstract Two-dimensional (2D) semiconductors, especially transition metal dichalcogenides
(TMDs), have been envisioned as promising candidates in extending Moore's law. To …
(TMDs), have been envisioned as promising candidates in extending Moore's law. To …
Phase engineering and synchrotron-based study on two-dimensional energy nanomaterials
In recent years, there has been significant interest in the development of two-dimensional
(2D) nanomaterials with unique physicochemical properties for various energy applications …
(2D) nanomaterials with unique physicochemical properties for various energy applications …
Atomistic insights into highly active reconstructed edges of monolayer 2H-WSe2 photocatalyst
Ascertaining the function of in-plane intrinsic defects and edge atoms is necessary for
develo** efficient low-dimensional photocatalysts. We report the wireless photocatalytic …
develo** efficient low-dimensional photocatalysts. We report the wireless photocatalytic …
Synthesis and characterization of 2D transition metal dichalcogenides: Recent progress from a vacuum surface science perspective
Layered transition metal dichalcogenides (TMDs) are a diverse group of materials whose
properties vary from semiconducting to metallic with a variety of many body phenomena …
properties vary from semiconducting to metallic with a variety of many body phenomena …
Defect chemistry in 2D materials for electrocatalysis
Abstract Two-dimensional (2D) nanomaterials, including metal-free (graphene, carbon
nitride, and black phosphorus et al.) and transition metal-based materials (dichalcogenides …
nitride, and black phosphorus et al.) and transition metal-based materials (dichalcogenides …
Defect‐Engineered Atomically Thin MoS2 Homogeneous Electronics for Logic Inverters
Ultrathin molybdenum disulfide (MoS2) presents ideal properties for building next‐
generation atomically thin circuitry. However, it is difficult to construct logic units of MoS2 …
generation atomically thin circuitry. However, it is difficult to construct logic units of MoS2 …