Yoon et al., 2021 - Google Patents
Elucidation of Novel Potassium-Mediated Oxidation and Etching of Two-Dimensional Transition Metal DichalcogenidesYoon et al., 2021
- Document ID
- 4360375147458313821
- Author
- Yoon A
- Kim J
- Lee Z
- Publication year
- Publication venue
- ACS Applied Materials & Interfaces
External Links
Snippet
Preparation of edge-rich two-dimensional (2D) transition metal dichalocogenides (TMDs) has been actively investigated with the aim to improve their electrical and catalytic properties. Here, we elucidate the role of potassium ions in oxidation of TMDs and suggest a …
- 238000005530 etching 0 title abstract description 146
Classifications
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01B—NON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
- C01B31/00—Carbon; Compounds thereof
- C01B31/02—Preparation of carbon; Purification; After-treatment
- C01B31/0206—Nanosized carbon materials
- C01B31/022—Carbon nanotubes
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01B—NON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
- C01B31/00—Carbon; Compounds thereof
- C01B31/02—Preparation of carbon; Purification; After-treatment
- C01B31/0206—Nanosized carbon materials
- C01B31/0293—Other structures, e.g. nano-onions, nano-scrolls, nano-horns, nano-cones or nano-walls
-
- C—CHEMISTRY; METALLURGY
- C01—INORGANIC CHEMISTRY
- C01B—NON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
- C01B31/00—Carbon; Compounds thereof
- C01B31/02—Preparation of carbon; Purification; After-treatment
- C01B31/04—Graphite, including modified graphite, e.g. graphitic oxides, intercalated graphite, expanded graphite or graphene
- C01B31/0438—Graphene
- C01B31/0446—Preparation
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B82—NANO-TECHNOLOGY
- B82Y—SPECIFIC USES OR APPLICATIONS OF NANO-STRUCTURES; MEASUREMENT OR ANALYSIS OF NANO-STRUCTURES; MANUFACTURE OR TREATMENT OF NANO-STRUCTURES
- B82Y30/00—Nano-technology for materials or surface science, e.g. nano-composites
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B82—NANO-TECHNOLOGY
- B82Y—SPECIFIC USES OR APPLICATIONS OF NANO-STRUCTURES; MEASUREMENT OR ANALYSIS OF NANO-STRUCTURES; MANUFACTURE OR TREATMENT OF NANO-STRUCTURES
- B82Y40/00—Manufacture or treatment of nano-structures
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B82—NANO-TECHNOLOGY
- B82Y—SPECIFIC USES OR APPLICATIONS OF NANO-STRUCTURES; MEASUREMENT OR ANALYSIS OF NANO-STRUCTURES; MANUFACTURE OR TREATMENT OF NANO-STRUCTURES
- B82Y10/00—Nano-technology for information processing, storage or transmission, e.g. quantum computing or single electron logic
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Hofmann et al. | CVD-enabled graphene manufacture and technology | |
Beniwal et al. | Graphene-like boron–carbon–nitrogen monolayers | |
Bayer et al. | Atomic-scale in situ observations of crystallization and restructuring processes in two-dimensional MoS2 films | |
Li et al. | Morphological engineering of winged Au@ MoS2 heterostructures for electrocatalytic hydrogen evolution | |
Shi et al. | Substrate facet effect on the growth of monolayer MoS2 on Au foils | |
Fu et al. | One-step synthesis of metal/semiconductor heterostructure NbS2/MoS2 | |
Han et al. | Photoluminescence enhancement and structure repairing of monolayer MoSe2 by hydrohalic acid treatment | |
Zhang et al. | Dendritic, transferable, strictly monolayer MoS2 flakes synthesized on SrTiO3 single crystals for efficient electrocatalytic applications | |
Shi et al. | Controllable growth and transfer of monolayer MoS2 on Au foils and its potential application in hydrogen evolution reaction | |
Zhu et al. | Hyperbranched lead selenide nanowire networks | |
Liu et al. | Unique domain structure of two-dimensional α-Mo2C superconducting crystals | |
Vicarelli et al. | Controlling defects in graphene for optimizing the electrical properties of graphene nanodevices | |
Sun et al. | Graphene chemistry: synthesis and manipulation | |
Ostrikov et al. | Plasma nanoscience: from nano-solids in plasmas to nano-plasmas in solids | |
Li et al. | Role of boundary layer diffusion in vapor deposition growth of chalcogenide nanosheets: the case of GeS | |
Ma et al. | Repeated growth–etching–regrowth for large-area defect-free single-crystal graphene by chemical vapor deposition | |
Agrawal et al. | Controlled growth of MoS2 flakes from in-plane to edge-enriched 3D network and their surface-energy studies | |
Jin et al. | A new twist on nanowire formation: Screw-dislocation-driven growth of nanowires and nanotubes | |
Hong et al. | Controlled van der Waals heteroepitaxy of InAs nanowires on carbon honeycomb lattices | |
Kondekar et al. | The effect of nickel on MoS2 growth revealed with in situ transmission electron microscopy | |
Zhai et al. | One-dimensional nanostructures: principles and applications | |
Herrera-Reinoza et al. | Atomically precise bottom-up synthesis of h-BNC: graphene doped with h-BN nanoclusters | |
Zhang et al. | Shape-dependent defect structures of monolayer MoS2 crystals grown by chemical vapor deposition | |
Yun et al. | Recent progress on phase engineering of nanomaterials | |
Zhao et al. | Atomic-scale evidence of catalyst evolution for the structure-controlled growth of single-walled carbon nanotubes |