Results 261 to 270 of about 43,066 (308)
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Carbon Reinforcements and Carbon/Carbon Composites
1998Preface * Reinforcements, Carbon Fibres * Carbon/Carbon Composites and Conventional Graphite * Carbon Fibre Architecture * Processing of Carbon/Carbon Composites * Microstructure of Carbon/Carbon Composites * Mechanical Properties of Carbon/Carbon Composites * Thermal Properties of Carbon/Carbon Composites * Friction and Wear of Carbon/Carbon ...
Fitzer, Erich, Manocha, Lalit M.
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Angewandte Chemie, 2013
AbstractThe superior physical properties of carbon nanotubes (CNTs) have led to their broad application. Intrinsically, CNTs tend to agglomerate from hydrophobic interactions, which is highly undesirable for solution processing and device fabrication.
Kuzmicz, D. +6 more
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AbstractThe superior physical properties of carbon nanotubes (CNTs) have led to their broad application. Intrinsically, CNTs tend to agglomerate from hydrophobic interactions, which is highly undesirable for solution processing and device fabrication.
Kuzmicz, D. +6 more
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Black Carbon and the Carbon Cycle
Science, 1998When vegetation and fossil fuels burn, the combustion creates "black carbon" that becomes distributed throughout the environment. Determining how it is created and where it goes is important for studying the past history of fire and for understanding global carbon and oxygen budgets.
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Carbon–carbon bonding made easy
Chemical Communications, 2005AbstractFor Abstract see ChemInform Abstract in Full Text.
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(Invited) A Carbon-Carbon Hybrid Immobilizing Carbon Nanodots and Carbon Nanotubes
ECS Meeting Abstracts, 2016The thrust of this work is to integrate small and uniformly sized carbon nanodots (CND) with single-walled carbon nanotubes of different diameters as electron acceptors and electron donors, respectively, and to test their synergetic interactions in terms of optoelectronic devices.
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This is an open access article under the CC by licenseThe carbonization behaviors of a series of synthetic naphthalene-derived mesophase pitch powders subjected to different time and temperature profiles of oxidative stabilization were studied by ...
Stevenson, William T.K., Drbohlav, J.
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Materials Science and Engineering: A, 1997
Abstract A problem in the production of carbon-carbon composites from carbon fiber reinforced thermoset composites through pyrolization is the cracking of the matrix due to internal stresses caused by the large shrinkage of the pyrolizing matrix and the simultaneous expansion of the fibers.
Q. Gu, P. Kettunen
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Abstract A problem in the production of carbon-carbon composites from carbon fiber reinforced thermoset composites through pyrolization is the cracking of the matrix due to internal stresses caused by the large shrinkage of the pyrolizing matrix and the simultaneous expansion of the fibers.
Q. Gu, P. Kettunen
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Carbon-carbon, Carbon-nitrogen and Carbon-sulfur Bond Formation Reactions
2023<div style="text-align:justify;"> The construction of C-X (X = C, N, S) bonds is an important research content in the field of organic synthesis and drug preparation. Focusing on the green construction of the core skeleton of functional fine chemicals, the team has carried out research on green synthesis and catalytic reactions of fine ...
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On the Strength of Carbon-Hydrogen and Carbon-Carbon Bonds
The Journal of Chemical Physics, 1942Electron impact critical potentials are combined with thermochemical data to obtain values for the heats of the dissociation reactions, CH4=CH3+H, C2H6=C2H5+H, C2H6=2CH3, and nC4H10=2C2H5. The values found are: D(CH3–H)=101 kcal./mole, D(C2H5–H)=96 kcal./mole, D(CH3–CH3)=82.6 kcal./mole and D (C2H5–C2H5)=77.6 kcal./mole.
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Carbon–Carbon Coupling Constants: Discussion
1981Publisher Summary This chapter discusses the carbon-carbon coupling constants. The field of carbon-carbon coupling constants is in an expansive period with most of the new information coming from biosynthetic studies. Interest in carbon-carbon coupling constants has increased dramatically in the recent years.
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