H. B. G. Casimir. In the production of these components today, diamond is usually the material of choice. M. Seal. A. Griffin and P. Carruthers. The purest natural diamond single crystals reported so far1,2 have a conductivity of 24–25 Wcm-1K-1 at 300K, compared to 4 for Cu and 1.5 for Si. Illustrative numerical comparisons between phonon mean free paths and phonon thermal conductivity. Diamond has the highest thermal conductivity of any known material at temperatures above ~ 100K. Effects of etching and oxidation on the thermal conductivity of germanium. Growth defects in diamond films. solid circle, open square - Type Ia ; x-Type Ib; diamond -Type IIa; + - Type IIb (Burgemeister [1978]). D. G. Cahill and R. O. Pohl. This property is at a maximum (meaning maximum thermal conductivity) with maximal isotopical purity (of either 12C or 13C), and at a minimum when there is a 50% mixture. Intrinsic and extrinsic absorption and luminescence in diamond. “Thermal conductivity of diamond between 170 and 1200 k and the isotope effect,”, T. R. Anthony, W. R. Banholzer, J. J. Fleischer, L. Wei, P. K. Kuo, R. L. Thomas, and R. W. Pryor. J. M. Ziman. R. Berman and J. C. F. Brock. Download : Download high-res image (380KB)Download : Download full-size image. D. T. Morelli, J. P. Heremans, C. P. Beetz, W. S. Yoo, and H. Matsunami. A. Herb, and C. F. Gardinier. The thermal conductivity of dielectric crystals: the effect of isotopes. J. E. Graebner, J. The optical and electronic properties of semiconducting diamond. K), though reports exist of superior thermal conductivity in both carbo… J. F. Goff and N. Pearlman. J. E. Graebner and J. Nuclear probes in physical and geochemical studies of natural diamond. Interaction of microwave phonons with donor electrons in ge and si. Y.-J. D. T. Morelli, T. M. Hartnett, and C. J. Robinson. Copyright © 2020 Elsevier B.V. or its licensors or contributors. It finds that the TiC coverage of diamond surface is 96% in 800-Cu/55Dia and 70% in 1050-Cu/55Dia. A. T. Collins. Thermal conductivity of cvd diamond: techniques and results. K. C. Hass, M. A. Tamor, T. R. Anthony, and W. F. Banholzer. J. E. Graebner, S. Jin, G. W. Kammlott, J. J. The optical properties of diamond. D. M. Bibby. Thermal conductivity of isotopically enriched diamonds. D. Shectman, A. Feldman, M. D. Vaudin, and J. L. Hutchison. Aggregation of nitrogen in diamond. L. Wei, P. K. Kuo, R. L. Thomas, T. R. Anthony, and W. F. Banholzer. F. R. Sivazlian and B. R. Stoner. E. A. Burgemeister, C. A. J. Ammerlaan, and G. Davies. The diamond/SiC/Al composites with a large ratio of diamond to SiC particle size (7.8:1) were fabricated. J. E. Graebner, S. Jin, G. W. Kammlott, B. Bacon, L. Seibles, and W. Banholzer. The impact of deposition parameters on the thermal conductivity of cvd thin diamond films. Scattering of phonons by vacancies. R. Berman, F. E. Simon, and J. M. Ziman. It seems that high thermal conductivity with low thickness layer of coatings will be important for the design of composites with coatings. D. G. Cahill. Thermal conductivity is the ability of the material to transfer heat energy through it from high temperature region to low temperature region. Abstract. © Springer Science+Business Media New York 1995, Diamond: Electronic Properties and Applications, https://doi.org/10.1007/978-1-4615-2257-7_7, The Kluwer International Series in Engineering and Computer Science. Second international symposium on diamond materials. Chemical vapour deposition of diamond. However, data on the thermal conductivity of intentionally doped diamond is meager at the present time. L. A. Turk and P. G. Klemens. The scattering of low-frequency lattice waves by static imperfections. The thermal conductivity of germanium and silicon between 2 and 300k. E. A. Burgemeister. Absorption and luminescence spectroscopy. Phonon-electron scattering in single crystal silicon carbide. Moire fringe images of twin boundaries in chemical vapor deposited diamond. A. Herb, and C. F Gardinier. In P. L. Walker and P. A. Thrower, editors. Platelets and the infrared absorption of type ia diamonds. Thermal conductivity of amorphous solids above the plateau. K. Lassmann and Hp. B. Heteroepitaxial diamond growth on (100) silicon. Why Is The Thermal Conductivity Of Diamond So High? A. Herb, and C. F. Gardinier. The effect of isotopes on lattice heat conduction i. lithium fluoride. G. Davies. T. R. Anthony. V. I. Nepsha, V. R. Grinberg, Yu. High-temperature thermal conductivity of electron-irradiated diamond. The thermal conductivity of diamond at low temperatures. Thermal conductivity of silicon and germanium from 3k to the melting point. J. Callaway. The effect of free electrons on lattice conduction. J. W. Schwartz and C. T. Walker. R. Berman and M. Martinez. T. Ishiguro, T. A. Fjeldly, and C. Elbaum. T. Evans. Textured diamond growth on (100) ß-sic via microwave plasma chemical vapor deposition. In J. E. Field, editor. Ultrasonic attenuation by acceptor holes in si. In J. E. Field, editor. Nano-spherical TiC particles are distributed on the diamond surface, which provides effective mechanical interlocking. Diamond is highly crystalline in structure than other metals. In J. E. Field, editor. By continuing you agree to the use of cookies. D. P. White and P. G. Klemens. Thermal diffusivity of isotopically enriched. Thermal conductivity of diamond between 170 and 1200k and the isotope effect. B. R. Stoner and J. T. Glass. K. Baba, Y. Aikawa, and N. Shohata. … Diamond has the highest thermal conductivity of any known material at temperatures above ~ 100K. Electrical properties. J. E. Graebner, S. Jin, G. W. Kammlott, J. The nature of the acceptor centre in semiconducting diamond. Thermal conductivity measurement from 30 to 750k: the 3ω method. The thermal conductivity of isotopically enriched polycrystalline diamond films. G. A. Slack. J. W. Vandersande, C. B. Vining, and A. Zoltan. Thermal transport properties of n-type ge at low temperatures. S. Dannefaer. Low temperature thermal conductivity of natural type ii diamonds. Anharmonic thermal resistivity of dielectric crystals at low temperature.
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