graphene-modified graphite paper cathode for the

Диссертация на тему Влияние температуры и

Влияние температуры и кислорода на монослои графена и h-BN, сформированные на металлических поверхностях с близким периодом решетки тема диссертации и автореферата по ВАК РФ 01.04.07, доктор наук Шевелев Виктор Олегович

US8691441B2

A nano graphene-enhanced particulate for use as a lithium battery cathode active material, wherein the particulate is formed of a single or a plurality of graphene sheets and a plurality of fine cathode active material particles with a size smaller than 10 μm (preferably

The application of graphene in lithium ion battery

2014/10/8Graphene is composed of a single atomic layer of carbon which has excellent mechanical, electrical and optical properties. It has the potential to be widely used in the fields of physics, chemistry, information, energy and device manufacturing. In this paper, we briefly review the concept, structure, properties, preparation methods of graphene and its application in lithium ion batteries. A

Modified graphite and graphene electrodes for high

Original Paper Published: 31 January 2014 Modified graphite and graphene electrodes for high-performance lithium ion hybrid Especially when integrated with a urea-reduced graphene cathode, the modified graphite-based LIC exhibits significantly higher other

Interlayer Separation in Graphene Paper Comprising

Graphene flakes were obtained using electrochemical exfoliation of graphite; subsequently, graphene papers were fabricated by flow-directed assembly of the obtained graphene flakes. The double cantilever beam (DCB) specimens for the mode I fracture tests were prepared by gluing both sides of the graphene paper to two Si substrates.

PAPER OPEN ACCESS Recent Progress of Graphene as Cathode

IOP Conference Series: Earth and Environmental Science PAPER OPEN ACCESS Recent Progress of Graphene as Cathode materials in Lithium Ion Batteries To cite this article: Xiangyu Meng 2019 IOP Conf. Ser.: Earth Environ. Sci. 300 042039 View the article

Ultrahigh yield of hydrogen peroxide on graphite felt

In this work, a novel graphite felt cathode modified with electrochemically exfoliated graphene (EEGr) and carbon black was developed, and it presented a very high H 2 O 2 generation rate of 7.7 mg h −1 cm −2 with a relatively low energy consumption (9.7 kW h ).

OSA

Both reduced graphene oxide (RGO) and gold (Au) nanoparticles have shown distinct nonlinear optical characteristics, such as saturable absorption, that are appropriate for generating ultrashort pulse lasers. Unfortunately, there are no studies of Q-switched waveguide lasers using RGO and RGO modified with Au nanoparticles (Au-RGO) as saturable absorbers. Here we perform the pump-probe

Synthesis of graphene: Potential carbon precursors and

Graphite is a common precursor to graphene (a single layer of graphite), which is the most widely studied raw material for the synthesis of graphene. Still, the argument is that any of the crystalline phases of graphite, notwithstanding the stacking arrangement, comprise the structural unit "graphene

ANION INTERCALATION TO THE MULTILAYER GRAPHENE

Figure-3: XRD spectra of graphite, graphene oxide and graphene. As Shown in Figure-3, a sharp peak can be observed at 2θ values 26.6 which belongs to (002) plane. This indicates high crystallinity of graphite samples. The synthesized GO samples at 2θ= 9.8

The top 10 uses of Graphene

2015/8/11Graphene can easily help resolve one of the major problems associated with the conventional lithium ion batteries which is poor electrical conductivity of the cathode electrode. Graphene is already used in some lithium ion batteries as a conductive filler in cathode coating materials due to its high conductivity and inherently sheet like structure that facilitate charge transfer.

OSA

Both reduced graphene oxide (RGO) and gold (Au) nanoparticles have shown distinct nonlinear optical characteristics, such as saturable absorption, that are appropriate for generating ultrashort pulse lasers. Unfortunately, there are no studies of Q-switched waveguide lasers using RGO and RGO modified with Au nanoparticles (Au-RGO) as saturable absorbers. Here we perform the pump-probe

A Freestanding and Flexible Graphene Paper Cathode

Please use one of the following formats to cite this article in your essay, paper or report: APA Critchley, Liam. (2017, August 31). A Freestanding and Flexible Graphene Paper Cathode for the Conversion of Carbon Dioxide. AZoNano. Retrieved on April 13, 2021

SYNTHESIS AND CHARACTERIZATION OF GRAPHENE

2020/3/13Here we report modified Hummer's method using charcoal activated in place of graphite flakes for synthesis of GO having different stirring time and temperature. Further X-ray diffraction analysis, FT-IR, Raman spectroscopy, and FESEM were used for characterization of synthesised graphene oxide.

(PDF) Synthesis of graphene oxide electrode for lead

In this study, graphene oxide was synthesized using the Improved Graphene Oxide (IGO) method to be used as an work electrode in lead analysis by cyclic voltammetry. Graphene oxide used due to its good electron conductivity and transportation

The graphene challenge

'Scratching graphite is a great proof-of-concept method that gives high-quality graphene for laboratories - but it won't work for industrial applications,' says Geim. The only commercial supplier of graphene is Graphene Industries, a spin-out company from the University of Manchester, UK.

Fabrication of multi

Hydrogen peroxide (H2O2) electrogenerated via two-electron oxygen reduction reaction at cathode plays an important role in electrochemical advanced oxidation processes for organic pollutants removal from wastewater. Herein, multi-walled carbon nanotubes and carbon black co-modified graphite felt electrode (MWCNTs-CB/GF) was prepared as an efficient cathode for H2O2 electrogeneration and

Modifying graphite felt cathode by HNO3 or KOH to

The paper aimed to provide simple cathode modification methods to achieve large-scale production of modified cathodes and their application in the treatment of actual wastewater by EF. The GF electrodes were modified by HNO 3 and KOH reagents respectively, and then the physicochemical structure and the H 2 O 2 production performance of modified cathodes were investigated.

A Freestanding and Flexible Graphene Paper Cathode for

Please use one of the following formats to cite this article in your essay, paper or report: APA Critchley, Liam. (2017, August 31). A Freestanding and Flexible Graphene Paper Cathode for the Conversion of Carbon Dioxide. AZoNano. Retrieved on April 13, 2021 from

PAPER OPEN ACCESS Recent Progress of Graphene as Cathode materials in Lithium Ion Batteries

IOP Conference Series: Earth and Environmental Science PAPER OPEN ACCESS Recent Progress of Graphene as Cathode materials in Lithium Ion Batteries To cite this article: Xiangyu Meng 2019 IOP Conf. Ser.: Earth Environ. Sci. 300 042039 View the article

SYNTHESIS AND CHARACTERIZATION OF GRAPHENE

2020/3/13Here we report modified Hummer's method using charcoal activated in place of graphite flakes for synthesis of GO having different stirring time and temperature. Further X-ray diffraction analysis, FT-IR, Raman spectroscopy, and FESEM were used for characterization of synthesised graphene oxide.

Modified graphite and graphene electrodes for high

Modified graphite and graphene electrodes for high-performance lithium ion hybrid capacitors Modified graphite and graphene electrodes for high-performance lithium ion hybrid capacitors Lee, Ji; Shin, Weon; Lim, Soo; Kim, Byung; Choi, Jang 2014-01-31 00:00:00 Mater Renew Sustain Energy (2014) 3:22 DOI 10.1007/s40243-014-0022-9 OR IGINAL PAPER Modified graphite and graphene electrodes

Recent progress in graphene‐based electrodes for flexible

The obtained graphene‐sulfur paper exhibited the same flexibility with the pure graphene paper because of the ultra‐small size of the obtained sulfur. The flexible graphene‐based cathode delivered a reversible capacity of 600 mAh g −1 at 0.1C.

Importance of Graphene in the Electro

Graphite felt modified with N-doped graphene was used as a cathode for the electro-Fenton process. (20) The selectivity of the two-electron pathway was improved due to the increased mass transfer and oxygen diffusion, which prevent the further conversion of H 2 O 2 to water.

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