[go: up one dir, main page]

Zhou et al., 2022 - Google Patents

Direct plasma‐enhanced‐chemical‐vapor‐deposition syntheses of vertically oriented graphene films on functional insulating substrates for wide‐range applications

Zhou et al., 2022

Document ID
182866307871771039
Author
Zhou F
Shan J
Cui L
Qi Y
Hu J
Zhang Y
Liu Z
Publication year
Publication venue
Advanced Functional Materials

External Links

Snippet

Graphene has inspired wide‐range research interests and practical applications due to its intriguing materials properties and versatile application prospects. Specifically, vertically oriented graphene (VG) constructed by vertically aligned nanosheets emerges as a unique …
Continue reading at onlinelibrary.wiley.com (other versions)

Classifications

    • CCHEMISTRY; METALLURGY
    • C01INORGANIC CHEMISTRY
    • C01BNON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
    • C01B31/00Carbon; Compounds thereof
    • C01B31/02Preparation of carbon; Purification; After-treatment
    • C01B31/04Graphite, including modified graphite, e.g. graphitic oxides, intercalated graphite, expanded graphite or graphene

Similar Documents

Publication Publication Date Title
Zhou et al. Direct plasma‐enhanced‐chemical‐vapor‐deposition syntheses of vertically oriented graphene films on functional insulating substrates for wide‐range applications
Ma et al. Graphene‐based transparent conductive films: material systems, preparation and applications
Wang et al. Multifunctional integrated transparent film for efficient electromagnetic protection
Abdulhafez et al. Fluence-dependent morphological transitions in laser-induced graphene electrodes on polyimide substrates for flexible devices
Zhao et al. Pressure-induced self-interlocked structures for expanded graphite composite papers achieving prominent EMI shielding effectiveness and outstanding thermal conductivities
Qi et al. Switching vertical to horizontal graphene growth using faraday cage‐assisted PECVD approach for high‐performance transparent heating device
Pham et al. Direct growth of graphene on rigid and flexible substrates: Progress, applications, and challenges
Zhou et al. Second time-scale synthesis of high-quality graphite films by quenching for effective electromagnetic interference shielding
Lordan et al. Asymmetric pentagonal metal meshes for flexible transparent electrodes and heaters
JP5578640B2 (en) Conductive film, conductive substrate, transparent conductive film, and production method thereof
CN102804285B (en) The Graphene electronic material of doping
Cheong et al. High‐Performance Transparent Electrodes for Automobile Windshield Heaters Prepared by Combining Metal Grids and Oxide/Metal/Oxide Transparent Electrodes
CN104795292B (en) Electron emission device, manufacturing method thereof and display
Jeong et al. Flexible field emission from thermally welded chemically doped graphene thin films
CN104795300B (en) Electron emission source and manufacturing method thereof
JP2010120819A (en) Semiconductor device having carbon film and method for manufacturing the same
Guo et al. Conductive writing with high precision by laser‐induced point‐to‐line carbonization strategy for flexible supercapacitors
Qi et al. Super graphene-skinned materials: an innovative strategy toward graphene applications
Martinez et al. Silver nanowires on carbon nanotube aerogel sheets for flexible, transparent electrodes
Shan et al. Enhancing the heat-dissipation efficiency in ultrasonic transducers via embedding vertically oriented graphene-based porcelain radiators
Chhetri et al. Flexible graphite nanoflake/polydimethylsiloxane nanocomposites with promising solar–thermal conversion performance
Li et al. The role of graphene in enhancing electrical heating and mechanical performances of graphene− aligned silver nanowire hybrid transparent heaters
US20140017440A1 (en) Structure of graphene oxide, the method of fabrication of the structure, the method of fabricating field-effect transistor using the structure
Zhou et al. Adhesion-enhanced vertically oriented graphene on titanium-covered quartz glass toward high-stability light-dimming-related applications
Yang et al. Facile synthesis 3D flexible core-shell graphene/glass fiber via chemical vapor deposition