improving the self-sintering of mesocarbon-microbeads

Materials

Graphitendash;metal composites have been used as friction materials owing to their self-lubricity, which is ascribed to the weak interlayer bonding of graphite. To overcome the shortage of graphite flake (GrF)-filled composites of having low tribological properties, graphite-Cu composites with mesocarbon microbead (MCMB) as the solid lubricant are developed in this paper. The MCMBndash;Cu

UiSu Im

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A Novel Bifunctional Self‐Stabilized Strategy Enabling 4.6 V

2019/2/1510 C. Moreover, the long-term cyclability of CMLCO/mesocarbon microbeads full cells is also enhanced significantly even at high temperature of 60 C. The synergistic effects of this bifunctional self-stabilized strategy on structural reversibility and interfacial

Molecules

Mesocarbon microbeads have many potential applications in mechanical carbons, as filters and as adsorbates []. Diamond-like films, the development of which has taken place over the past few years, have provided much interest in structures which have little graphitic character.

Manufacture of high density carbon blocks by self

advanced methods, such as using mesocarbon microbeads (MCMB) [11, 12, 13], utilizing self-sintering coke [14, 15], adding a sintering agent [16], and using mes-ophase powders [17, 18, 19]. The MCMB and mesophase powders exhibit self-sintering behaving

Effect of incorporating nano silicon carbide on the properties of

of single self sintering raw material, namely, mesocarbon microbeads 4-8 and raw coke or green coke (GC) or bulk mesophase powder 9-10. Out of these methods, the green coke method is found to be cost effective and less cumbersome have been used as

Understanding undesirable anode lithium plating issues in

When the ratio was 0.9, the potential of mesocarbon microbeads (MCMB) was reduced to −0.1 V with occurrence of lithium plating during 0.2 C charging, while the potential of MCMB remained above 0 V when the ratio was 1.05, suggesting that the capacity ratio

A Novel Bifunctional Self‐Stabilized Strategy Enabling 4.6 V

2019/2/1510 C. Moreover, the long-term cyclability of CMLCO/mesocarbon microbeads full cells is also enhanced significantly even at high temperature of 60 C. The synergistic effects of this bifunctional self-stabilized strategy on structural reversibility and interfacial

Interface enhancement of carbon nanotube/mesocarbon

The other uses self-sinteringcarbonaceousmesophase such as mesocarbon microbeads (MCMBs) for binderless forming [3,4]. The strength of MCMB-derived graphite is determined by several factors, including pre-oxidation conditions, the degree of graphiti

Molecules

Mesocarbon microbeads have many potential applications in mechanical carbons, as filters and as adsorbates []. Diamond-like films, the development of which has taken place over the past few years, have provided much interest in structures which have little graphitic character.

(PDF) Preparation and structure analysis of nano

Preparation and structure analysis of nano-iron/mesocarbon microbead composites made from a coal tar pitch with addition of ferrocene Chengyang Wang IntroductionMesocarbon microbeads (MCMB) have been used as the precursor of high-density and high-strength carbon artifacts [1][2][3][4][5], for their uniform size, excellent sphericity, self-sintering, homogeneous shrinkage and high yield of

A Novel Bifunctional Self‐Stabilized Strategy Enabling 4.6 V

Moreover, the long‐term cyclability of CMLCO/mesocarbon microbeads full cells is also enhanced significantly even at high temperature of 60 C. The synergistic effects of this bifunctional self‐stabilized strategy on structural reversibility and interfacial stability are demonstrated by investigating the phase transitions and interface characteristics of cycled LiCoO 2 .

Anodes for the Electrolytic Production of Nitrogen

In contrast, due to the nature of the mesocarbon microbeads, the mesocarbon microbeads may self-sinter at low temperatures (e.g., about 400-600 C.). Self-sintering means the microbeads are pressed and fused together and sintered or heated, but require no binders, resins, fillers, or the like in order to mold and sinter the anode part.

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[44] Y. Gao, H. Song, et al., 2003, "Self-sinterability of mesocarbon microbeads (MCMB) for preparation of high-density isotropic carbon", Joural of materials science, vol.38, pp.2209-2213. [45] J.M. Andresen, H.H. Schobert, et al, 2000, "Correlation between pitch structure and fluidity for the development of superior binders for carbon materials", The first World Conference on Carbon

(PDF) ACTIVATED MONOLITHS BASED ON

Because mesophase-based materials have self-sintering ability, these materials are good candidates to produce monoliths of activated carbon of high surface area without using a binder [13, 14]. In this paper we present the effects induced by the chemical activation and the processsing conditions on the structure of activated carbon monoliths based on carbonaceous mesophase.

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The self-diffusion coefficient of n-octadecane molecule increases significantly with the increase of temperature. When the temperature increases from 253 K to 283 K, the self-diffusion coefficient gradually increases from 0.951 nm 2 /ns to 1.526 nm 2 /ns, while in the range of 293-313 K, the self-diffusion coefficient significantly increases from 1.655 nm 2 /ns to 3.356 nm 2 /ns.

Materials

Graphitendash;metal composites have been used as friction materials owing to their self-lubricity, which is ascribed to the weak interlayer bonding of graphite. To overcome the shortage of graphite flake (GrF)-filled composites of having low tribological properties, graphite-Cu composites with mesocarbon microbead (MCMB) as the solid lubricant are developed in this paper. The MCMBndash;Cu

Author: Shen, Wanci

Mesocarbon microbeads (MCMBs) are attractive precursors for high-density, high-strength polycrystalline graphite due to their self-sintering capability. They have the shape of a standard sphere and stack in a completely random orientation during compaction, thereby leading to an isotropic texture.

Surface Modified Pinecone Shaped Hierarchical Structure

2016/12/1Surface Modified Pinecone Shaped Hierarchical Structure Fluorinated Mesocarbon Microbeads for Ultrafast Discharge and Improved Electrochemical Performances Yang Dai 1, Yuan Fang 1, Sendan Cai 1, Lijun Wu 2, Weijing Yang 1, Hao Yan 1, Jingying Xie 8,1,3, Jin-Cheng Zheng 8,4,5, Esther Takeuchi 7,6 and Yimei Zhu 8,2

Densification of in situ prepared mesocarbon microbead/carbon nanotube composites by hot

Densification of in situ prepared mesocarbon microbead/carbon nanotube composites by hot-press sintering WU Bin( 1, 2), GONG Qian-ming()1, 2, WU Jian-jun( )1, 2, SONG Huai-he()3, LIANG Ji( ) 1, 2 1. Department of Mechanical

Improving the self

2012/3/1Fine spherical mesocarbon-microbeads (MCMBs), having average particle sizes of 24.57, 11.69 and 10.74 μm, were mixed with various amounts of solid-resins (with high β-resin contents) to prepare graphite-matrixes in self-sintering reactions.The results indicate

Synthesis of Mg

The potential application of a carbon nanocomposite from battery anode materials modified with magnesium (Mg) was explored to remove phosphate from aqueous solutions. Thermogravimetric analysis (TGA) shows that the Mg content of the prepared Mg/C composite is around 23.5%. Laboratory batch adsorption kinetics and equilibrium isotherm experiments demonstrate that the composite has an

Advanced Carbon Products and Metrology Section

These mesocarbon microbeads of spherical size are separated by solvent extraction method from coal tart pitch and heat treated to get mesocarbon microbeads powder shown in SEM image. The MCMB can be used as anode material in Li ion Batteries.

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The self-diffusion coefficient of n-octadecane molecule increases significantly with the increase of temperature. When the temperature increases from 253 K to 283 K, the self-diffusion coefficient gradually increases from 0.951 nm 2 /ns to 1.526 nm 2 /ns, while in the range of 293-313 K, the self-diffusion coefficient significantly increases from 1.655 nm 2 /ns to 3.356 nm 2 /ns.

UiSu Im

세계 최대의 비즈니스 인맥 사이트 LinkedIn에서 UiSu Im님의 프로필을 확인하세요. UiSu님의 프로필에 경력 4개가 있습니다. LinkedIn에서 프로필을 보고 UiSu님의 1촌과 경력을 확인하세요. UiSu Im 성균관대학교 박사후연구원 대한민국 서울 1촌 26명

Engineering novel synthetic strategy to develop

2018/4/11Fang M-D et al 2015 Improving the sintering behavior of mesocarbon-microbeads for the manufacture of high quality carbon products using a joint promoter comprising carbon black and glycidyl methacrylate Mater. Chem. Phys. 149 400–4 Crossref Google Scholar

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