graphite

Investigating the Lithium Plating Triggering Criterion for Graphite Electrode

J. Mater. Chem. A, 2024, Accepted Manuscript
DOI: 10.1039/D4TA00244J, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Jiani Li, Lubing Wang, Jun Xu
Lithium plating is considered an undesirable side reaction due to its potential to induce capacity fade and pose safety concerns in Li-ion batteries. The timely detection of lithium plating onset...
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graphite

The Domestic EV Supply Chain Is Getting A Big Dose Of Synthetic Graphite

Stellantis is the latest US electric vehicle stakeholder to firm up its EV supply chain with synthetic graphite produced in Tennessee.

The post The Domestic EV Supply Chain Is Getting A Big Dose Of Synthetic Graphite appeared first on CleanTechnica.




graphite

Bringing a tariff to a graphite fight

Graphite is sort of the one-hit wonder of minerals. And that hit? Pencils. Everyone loves to talk about pencils when it comes to graphite. If graphite were to perform a concert, they'd close out the show with "pencils," and everyone would clap and cheer. But true fans of graphite would be shouting out "batteries!" Because graphite is a key ingredient in another important thing that we all use in our everyday lives: lithium ion batteries.

Almost all of the battery-ready graphite in the world comes from one place: China. That's actually true of lots of the materials that go into batteries, like processed lithium and processed cobalt. Which is why it was such a big deal when, earlier this year, President Biden announced a tariff package that will make a bunch of Chinese imports more expensive. Included in this package are some tariffs on Chinese graphite. He wants to create a new battery future—one that doesn't rely so much on China.

In this episode, we get down on the ground to look at this big supply chain story through the lens of one critical mineral. And we visit a small town that realizes that it might be the perfect place to create an American graphite industry. And we find that declaring a new battery future is one thing, but making it happen is another thing entirely.

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graphite

Graphite




graphite

Insoluble low-impedance organic battery cathode enabled by graphite grafting towards potassium storage

RSC Adv., 2024, 14,12658-12664
DOI: 10.1039/D4RA01420K, Paper
Open Access
Xiaolei Sun, Xianhui Yi, Ling Fan, Bingan Lu
Insoluble polymerized organic electrode is developed and wrapped in graphite sheets, which possesses low-impedance and realized a cycling life of over 1500 cycles. This work provides insights for exploring high-performance organic cathodes.
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graphite

Highly crystalline graphite nanofibers as an anode for high-performance potassium-ion batteries

New J. Chem., 2024, 48,7497-7502
DOI: 10.1039/D4NJ00662C, Paper
Kaixuan Sun, Kun Chang, Jinshuo Tan, Chuan-Fu Sun, Qin Liu
Graphite nanofibres with high crystallinity and low defect levels for potassium-ion batteries with high initial Coulombic efficiency and long cycling stability are reported in this study.
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graphite

Reuse of spent industrial graphite in batteries by green recycling and interphase functionalization

Mater. Chem. Front., 2024, 8,3653-3663
DOI: 10.1039/D4QM00438H, Research Article
Yu Jiang, Yuqing Li, Qunting Qu, Linze Lv, Jie Shao, Jing Wang, Honghe Zheng
A green, energy-saving and effective method for recycling graphite from spent Li-ion batteries and its reutilization in high-voltage dual-ion batteries are developed.
The content of this RSS Feed (c) The Royal Society of Chemistry




graphite

Surface science studies of the coverage dependent adsorption of methyl acetate and methyl propanoate on graphite

RSC Adv., 2024, 14,35373-35385
DOI: 10.1039/D4RA04466E, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Jack E. Fulker, Wendy A. Brown
The adsorption of methyl acetate and methyl propanoate has been studied on a graphite surface at 28 K. TPD data show that the desorption energy of both molecules is highly coverage dependent with repulsive interactions being seen at low coverages.
The content of this RSS Feed (c) The Royal Society of Chemistry




graphite

Interplay of intercalation dynamics and lithium plating in monolithic and architectured graphite anodes during fast charging

Energy Environ. Sci., 2024, 17,8702-8721
DOI: 10.1039/D4EE02211D, Paper
Open Access
Aleksandar S. Mijailovic, Seth Waag-Swift, Guanyi Wang, Bingyao Zhou, Mei Luo, Wenquan Lu, Qingliu Wu, Brian W. Sheldon
Fast charging of high-capacity anodes is challenging due to lithium plating reactions, which lead to poor cycling performance and safety concerns.
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graphite

An eco-friendly polycaprolactone/graphite composite as a robust freestanding electrode platform for supercapacitive energy storage

Nanoscale, 2024, 16,20155-20167
DOI: 10.1039/D4NR03113J, Paper
Rajeev Gupta, Monika Singhal
A novel eco-friendly composite electrode/current collector made from polycaprolactone and graphite filler offers bulk conductivity, is freestanding, cost-effective, and shows supercapacitive energy storage potential with electrodeposited polyaniline.
The content of this RSS Feed (c) The Royal Society of Chemistry




graphite

Exploring Graphene's Impact on Graphite/PANI Matrix Composites: High-Press Fabrication and Enhanced Thermal-Electrical Properties

Nanoscale, 2024, Accepted Manuscript
DOI: 10.1039/D4NR03171G, Paper
Murat OZLEK, Merve Sehnaz Akbulut, Engin Burgaz
This study investigates the effects of graphene content and applied press on electrical and thermal conductivities of graphite/polyaniline (GP) and graphite/graphene/polyaniline (GGP) composites which were produced by using direct mixing...
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graphite

Graphite Miner Faces Hurdles but Foresees Strong Market for Product

Maurice Jackson of Proven and Probable discusses the future of DNI Metals with the company's executive chairman.




graphite

Graphene prepared by using edge functionalization of graphite

Disclosed is a method for producing graphene functionalized at its edge positions of graphite. Organic material having one or more functional groups is reacted with graphite in reaction medium comprising methanesulfonic acid and phosphorus pentoxide, or in reaction medium comprising trifluoromethanesulfonic acid, to produce graphene having organic material fuctionalized at edges. And then, high purity and large scaled graphene and film can be obtained by dispersing, centrifugal separating the functionalized graphene in a solvent and reducing, in particular heat treating the graphene. According to the present invention graphene can be produced inexpensively in a large amount with a minimum loss of graphite. (FIG. 1)




graphite

Method for treating spheroidal graphite iron and pouring device thereof

A method for treating spheroidal graphite iron includes the step: pouring molten spheroidal graphite iron into a pouring electrical furnace (1); covering the molten spheroidal graphite iron (5) with alkali slag (6) which is melted at high temperature and rich in alkali earth metal ion, rare earth metal ion, or mixture of them; connecting the molten spheroidal graphite iron (5) with the negative pole of the direct current source by one pole (7); connecting the alkali slag (6) with the positive pole of the direct current source by another pole (4), treating the molten spheroidal graphite iron (5) with the alkali slag (6) which is used as electrolyte. The method can prevent the spheroidized fading velocity of the spheroidal graphite iron. The pouring electrical furnace can be used for treating the molten spheroidal graphite iron.




graphite

Graphite electrodes

A graphite electrode exhibits oxidation resistance by modifying the outer radial surface characteristics. The outer radial surface may be modified by providing a textured portion which improves water flow while minimizing water absorbtion. Alternately, a layer of flexible graphite or plurality of particles of exfoliated graphite may be disposed on the outer radial surface of the electrode body.




graphite

Graphite crucible for silicon electromagnetic induction heating and apparatus for silicon melting and refining using the graphite crucible

Disclosed herein are a graphite crucible for electromagnetic induction-based silicon melting and an apparatus for silicon melting/refining using the same, which performs a melting operation by a combination of indirect melting and direct melting. The crucible is formed of a graphite material and includes a cylindrical body having an open upper part through which a silicon raw material is charged into the crucible, and an outer wall surrounded by an induction coil, wherein a plurality of slits are vertically formed through the outer wall and an inner wall of the crucible such that an electromagnetic force created by an electric current flowing in the induction coil acts toward an inner center of the crucible to prevent a silicon melt from contacting the inner wall of the crucible.




graphite

Graphite crucible for electromagnetic induction melting silicon and apparatus for silicon melting and refining using the graphite crucible

A graphite crucible for electromagnetic induction-based silicon melting and an apparatus for silicon melting/refining using the same, which performs a melting operation by a combination of indirect melting and direct melting. The crucible is formed of a graphite material and includes a cylindrical body having an open upper part through which a silicon raw material is charged into the crucible, and an outer wall surround by an induction coil, wherein a plurality of first slits are vertically formed through the outer wall and an inner wall of the crucible, and a plurality of second slits are vertically formed from an edge of the disc-shaped bottom of the crucible toward a center of the bottom.




graphite

Graphite thermal decontamination with reducing gases

Providing a roaster that operates at temperatures in the range of 800° Celsius to 2000° Celsius with inert, optional oxidizing and reducing gases to treat graphite contaminated with radionuclides including tritium, carbon-14, and chlorine-36. The combination of temperatures and gases allow for the removal of most to substantially all the carbon-14 within the graphite while substantially limiting gasifying the bulk graphite.




graphite

Method of forming titanium nitride coatings on carbon/graphite substrates by electric arc thermal spray process using titanium feed wire and nitrogen as the atomizing gas

Graphite and/or carbon surfaces are coated with a titanium nitride coating by exposing the substrate to electric arc thermal spray process wherein titanium wire as the source of titanium and nitrogen is used as the propelling (atomizing) gas.




graphite

Metal-bonded graphite foam composites

A metal-bonded graphite foam composite includes a ductile metal continuous phase and a dispersed phase that includes graphite foam particles.




graphite

Methods of fabricating polycrystalline diamond products using a selected amount of graphite particles

Embodiments of the invention relate to polycrystalline diamond (“PCD”) fabricated by sintering a mixture including diamond particles and a selected amount of graphite particles, polycrystalline diamond compacts (“PDCs”) having a PCD table comprising such PCD, and methods of fabricating such PCD and PDCs. In an embodiment, a method includes providing a mixture including graphite particles present in an amount of about 0.1 weight percent (“wt %”) to about 20 wt % and diamond particles. The method further includes subjecting the mixture to a high-pressure/high-temperature process sufficient to form PCD.




graphite

[ASAP] Stabilized Electrode/Electrolyte Interphase by a Saturated Ionic Liquid Electrolyte for High-Voltage NMC532/Si-Graphite Cells

ACS Applied Materials & Interfaces
DOI: 10.1021/acsami.0c06038




graphite

Trace manganese detection via differential pulse cathodic stripping voltammetry using disposable electrodes: additively manufactured nanographite electrochemical sensing platforms

Analyst, 2020, 145,3424-3430
DOI: 10.1039/D0AN00018C, Paper
Open Access
Diego P. Rocha, Christopher W. Foster, Rodrigo A. A. Munoz, Gary A. Buller, Edmund M. Keefe, Craig E. Banks
Additive manufacturing is a promising technology for the rapid and economical fabrication of portable electroanalytical devices.
The content of this RSS Feed (c) The Royal Society of Chemistry




graphite

The influence of lateral flake size in graphene/graphite paste electrodes: an electroanalytical investigation

Anal. Methods, 2020, 12,2133-2142
DOI: 10.1039/D0AY00169D, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Alejandro García-Miranda Ferrari, Hadil M. Elbardisy, Valentine Silva, Tarek S. Belal, Wael Talaat, Hoda G. Daabees, Craig E. Banks, Dale A. C. Brownson
We report the electroanalytical properties of graphene and graphite paste electrodes comprising varying lateral flake sizes when applied for sensing relevant biomolecules and prominent drugs of abuse.
The content of this RSS Feed (c) The Royal Society of Chemistry




graphite

3D flower-like molybdenum disulfide modified graphite felt as a positive material for vanadium redox flow batteries

RSC Adv., 2020, 10,17235-17246
DOI: 10.1039/D0RA02541K, Paper
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Lei Wang, Shuangyu Li, Dan Li, Qinhao Xiao, Wenheng Jing
The open flower-like structure facilitates vanadium ion transport. The capacity and efficiency of a battery using MoS2/GF are dramatically increased.
The content of this RSS Feed (c) The Royal Society of Chemistry




graphite

Retraction: Enhanced adsorption of Eu(III) on mesoporous Al2O3/expanded graphite composites investigated by macroscopic and microscopic techniques

Dalton Trans., 2020, 49,5742-5742
DOI: 10.1039/D0DT90075C, Retraction
Open Access
  This article is licensed under a Creative Commons Attribution 3.0 Unported Licence.
Yubing Sun, Changlun Chen, Xiaoli Tan, Dadong Shao, Jiaxing Li, Guixia Zhao, Shubin Yang, Qi Wang, Xiangke Wang
The content of this RSS Feed (c) The Royal Society of Chemistry




graphite

[ASAP] Hierarchical and Self-Supported Vanadium Disulfide Microstructures@Graphite Paper: An Advanced Electrode for Efficient and Durable Asymmetric Capacitive Deionization

ACS Sustainable Chemistry & Engineering
DOI: 10.1021/acssuschemeng.0c00712




graphite

Adjustable anchoring of Ni/Co cations by oxygen-containing functional groups on functionalized graphite paper and accelerated mass/electron transfer for overall water splitting

Catal. Sci. Technol., 2020, 10,2627-2643
DOI: 10.1039/D0CY00181C, Paper
Yiyi Huang, Lei Sun, Zebin Yu, Ronghua Jiang, Jun Huang, Yanping Hou, Fei Yang, Boge Zhang, Runzhi Zhang, Yalan Zhang
NCS–NCO/FGP0.44 with a cellular network of porous nanosheets and close-contact heterointerface reveals accelerated interfacial mass/electron transportation for overall water splitting.
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