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Carbon Thin sentence examples within Amorphou Carbon Thin
The ZIF-8, a nanostructure with amorphous carbon thin film (ACTF), and the mesoporous silica order (MCM-41, SBA-15) were also synthesized in the present study.
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In this paper, a pulsed laser deposition (PLD) technique through controlling experimental parameters, including deposition time/temperature and laser energy/frequency, has been employed to examine the substrate effect of amorphous carbon thin film fabrication over SiO2 and glass substrates.
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Carbon Thin sentence examples within Activated Carbon Thin
In this study, the activated carbon thin film (ACTF) as a new carbon nanostructure was synthesized and used as an adsorbent in activated carbon thin film/thin-film nano-filtration composite membrane (ACTF/TFNF).
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These results demonstrated that the activated carbon thin-film electrode doped with AgNWs@NiO–Co3O4 nanocomposites can effectively improve the capacitance and stability of the capacitor.
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Carbon Thin sentence examples within carbon thin film
The ZIF-8, a nanostructure with amorphous carbon thin film (ACTF), and the mesoporous silica order (MCM-41, SBA-15) were also synthesized in the present study.
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Carbon thin film (CTF)-modified electrodes were successfully prepared on Ni substrates via a one-step hydrothermal method.
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Carbon Thin sentence examples within carbon thin layer
Herein, for the first time, a hybrid of BiOx decorated with carbon thin layer is developed as high active electrocatalyst for CO2 conversion, which is synthesized by pyrolysis using Bi MOF as precursor and sacrificial template.
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This has been achieved through the epitaxial growth of pyrolytic carbon thin layers at the CNT surface and then followed by graphitization treatment at 2200 °C for 1 h.
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The ZIF-8, a nanostructure with amorphous carbon thin film (ACTF), and the mesoporous silica order (MCM-41, SBA-15) were also synthesized in the present study.
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Herein, for the first time, a hybrid of BiOx decorated with carbon thin layer is developed as high active electrocatalyst for CO2 conversion, which is synthesized by pyrolysis using Bi MOF as precursor and sacrificial template.
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Carbon thin film (CTF)-modified electrodes were successfully prepared on Ni substrates via a one-step hydrothermal method.
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In this paper, a pulsed laser deposition (PLD) technique through controlling experimental parameters, including deposition time/temperature and laser energy/frequency, has been employed to examine the substrate effect of amorphous carbon thin film fabrication over SiO2 and glass substrates.
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In this study, the activated carbon thin film (ACTF) as a new carbon nanostructure was synthesized and used as an adsorbent in activated carbon thin film/thin-film nano-filtration composite membrane (ACTF/TFNF).
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Unlike standard metal foil strain gauges with a gauge factor of 2, a type of strain gauges based on sputter-deposited NiCr -carbon thin films on polymer substrates offers the advantage of an improved gauge factor of about 10.
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Examination of the carbon thin films with SEM, X-ray photoelectron spectroscopy, and Raman spectroscopy indicated that they consist of domains of coherent, single-layer graphene produced by the coalescence of the expanding graphene islands.
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Here, we report all-carbon thin-film transistors made using crystalline nanocellulose as a dielectric, carbon nanotubes as a semiconductor, graphene as a conductor and paper as a substrate.
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In the present work, the Pt-Cr2N composite and carbon thin film electrodes were directly deposited on a flexible 304 stainless steel current collector by the one-step sputtering technique.
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Uniform carbon thin films containing cobalt oxide nanoparticles (CoO NPs) of various concentrations and sizes are obtained by Combinatorial Matrix-Assisted Pulsed Laser Evaporation (C-MAPLE) followed by a post-annealing treatment.
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In this study, we report the deposition of nanocrystalline carbon thin films by modified anodic jet carbon arc technique assisted with inert-helium and reactive-nitrogen gaseous environments.
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These results demonstrated that the activated carbon thin-film electrode doped with AgNWs@NiO–Co3O4 nanocomposites can effectively improve the capacitance and stability of the capacitor.
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Activated carbon thin film (ACTF) with a 3D laminated structure and single corn thickness shows the advantage of purifying water by stacking in a continuous membrane.
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In this paper, we developed a new method to construct flexible fully-printed all-carbon thin film transistors (TFTs) with excellent properties and highly sensitive ammonia (NH3) sensors via aerosol jet printing.
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This has been achieved through the epitaxial growth of pyrolytic carbon thin layers at the CNT surface and then followed by graphitization treatment at 2200 °C for 1 h.
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, Pd, Au and Ag) loading on Loofah sponge-derived well-ordered macroporous carbon (OMC)/N-doped carbon thin layer (N-C) was designed by a general approach.
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The article presents the results of metal-physical and tribological studies of carbon thin films - diamond-like coatings (DLC), obtained by vacuum ion-plasma technology.
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Carbon thin films on SKD11 steel were deposited by 40 kHz frequency plasma sputtering technique using a waste of battery carbon rods in argon plasma, and their mechanical properties were investigated by various target-substrate distances (1 cm, 1.
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Since these nanopores were successfully fabricated in the commercially available carbon thin film using readily available devices, we believe that these solid-state nanopores offer great utility in the field of nanopore research.
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Amorphous carbon thin films were prepared by direct current hollow cathode sputter deposition in Ar discharge with the injection of small amounts of H2 and/or N2.
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SEM, EDS, Raman spectroscopy, XPS, and XRD studies show that hexagonal Mo2C crystals, which are orthorhombic, grow along the [100] direction together with an amorphous carbon thin film on In.
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The electrochemical performance improvement could be attributed to the positive effect of the carbon thin layer that can effectively diminish interfacial impedance.
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Herein, we demonstrate an oriented monomicelle assembly strategy, for the facile fabrication of highly ordered mesoporous carbon thin films with vertically aligned and permeable mesopore channels.
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The origin of magnetism in RF magnetron sputtered deposited carbon thin films is reported.
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In the first step, metal–carbon thin films were prepared by radio-frequency reactive magnetron sputtering, using Cu, Ni, and Ti targets as the metal sources and CH4 gas as the carbon source during the co-deposition process.
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To further enhance the piezoresistive sensitivity of the obtained carbon thin films, a strain-engineering treatment was performed to introduce nanocracks into the as-prepared thin film samples.
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In this study cross-linked biocomposite with a high adsorption capacity was prepared by incorporating amorphous carbon thin film (ACTF); synthesized from rice straw by catalytic acid spray method; into the chitosan biopolymeric matrix by microwave irradiation precipitation technique.
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Technical lignin from pulping, an aromatic polymer with ~59% carbon content, was employed to develop novel lignin-based nano carbon thin film (LCF)-copper foil composite films for thermal management applications.
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In this article, we focused on using low cost bio-adsorbents such as chitosan from shrimp & crabs shells waste and amorphous carbon thin film ACTF from micro crystalline cellulose waste to prepare a new composite (ACTF/C) for removal of methylene blue (MB) dye from aqueous solution.
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The temperature-dependent resistivity in different magnetic fields and magnetic susceptibility measurements indicate a type-II Bardeen-Cooper-Schrieffer superconductivity in B-doped Q-carbon thin films.
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In this study, a nanohybrid template based on high aspect-ratio silver nanofibers and nitrogen-rich carbon thin layers as a core-shell structure is designed to improve the Coulombic efficiency (CE) and cycling performance of AF-SMBs.
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In this report, detailed studies of the nano-crystalline graphitic (NCG) carbon thin films deposited by filtered cathodic vacuum arc (FCVA) following its first discovery and first electrical characterization have been performed.
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We studied the charging behavior of an amorphous carbon thin film kept at liquid-nitrogen temperature under focused electron-beam irradiation.
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The chemical vapor deposition technique was adopted to synthesize the amorphous carbon thin films.
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5 M H2SO4 solutions, comparable to those of them working in alkaline conditions, is demonstrated, due to the protection of coated carbon thin film.
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Here, we report amorphous carbon thin films fabricated through chemical vapor deposition at a SiO2 substrate.
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Hydrogenated amorphous carbon thin films (a-C:H) have attracted much attention because of their surprising properties, including ultralow friction coefficients in specific conditions.
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The deposition of nanoporous carbon thin films with well-controlled morphology, high surface area and porosity is of great interest for different applications requiring autonomous and portable electrochemical devices for energy conversion and storage.
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The aim of this research to study the structure of amorphous carbon thin film.
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The LPCS, which is fabricated with a simple vacuum filtration of a mixture of carbon fibers (CFs), holey reduced graphene oxides (HRGOs), and carbon nanotubes (CNTs), possesses a lamellar stacking of porous carbon thin sheets, in which the CFs act as the skeleton and the HRGOs and CNTs act as binders.
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A nano-fluorocarbon thin film of about 10 nm thickness coated on the solid surface, which is composed of a large number of uniformly distributed tiny bumps and holes, making the coated surface present super-hydrophobicity and the contact angle θ reach 163.
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Amorphous carbon thin films with high hardness and wear resistance have become increasingly popular for surface engineering of materials for an array of applications ranging from cutting tools to biomedical devices.
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students, working in the areas of nanochemistry and nanotechnology, biochemistry and drug delivery, fabrication of carbon thin films from dispersion, application of composites of various carbon allotropes with polymers, and so on.
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Its mechanical properties and the inverse fabrication protocol commonly used for the manufacturing of pyrolyzed carbon thin-film devices, however, only allow for its use as the electrode material and not as material for interconnects and other conductive components.
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A diamond-like carbon thin film was deposited on the outer face of the germanium (Ge) window to protect the infrared lenses from a harsh environment in automotive application.
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This work investigates the effects of nitrogen incorporation on capacitance, work function and semiconductor properties of amorphous carbon thin film electrodes.
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We produced two biosensor chips consisting of Ag@Au bimetallic nanoparticles (BNPs) on a carbon thin film by simple RF-sputtering and RF-plasma-enhanced chemical vapor co-deposition.
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This unique nanostructured carbon thin film has a regular geometrical arrangement with a very high surface area due to the distinctive structural morphology along with a good contact with the conducting substrate on which it is directly deposited.
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In this work, a novel polyacrylates/amorphous carbon thin film (ACTF) composite was synthesized by initiation polymerization in the presence of a crosslinking agent.
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7 g/cm3) of amorphous carbon thin films which results in an increase in the film hardness (23 GPa) when depositing on Si substrates, without using substrate bias voltage, adhesion interfacial layer or substrate pre-treatment.
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These results revealed that the developed pulsed-dc discharge system for plasma CVD is applicable for the synthesis of insulating hard as well as soft conducting carbon thin films.
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We summarized the solid-phase interactions between transition metals and amorphous carbon thin films.
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Through an examination of the Raman spectra associated with a number of representative carbon thin-films, it has been established that the amplitude ratio is indeed related to the corresponding integrated intensity ratio.
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In the present study, the influence of target power and plasma produced species on optical, structural and morphological properties of diamond-like carbon thin films deposited by direct current unbalanced magnetron sputtering is investigated.
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The multilayer carbon thin-film exhibited promising surface fatigue performance showing a slight change in the hybridization state of the aC:H matrix.
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A systematic investigation of the soft magnetism, the change of modulus of elasticity with magnetization (<inline-formula><tex-math notation="LaTeX">$\Delta \sf{E}$</tex-math></inline-formula> effect), magnetostriction, and microwave properties has been carried out on iron-gallium-carbon thin films over a wide carbon content range.
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