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      Mechanism of formation of 〈110〉 oriented fivefold microcrystallites in diamond films

      , ,
      Applied Physics Letters
      AIP Publishing

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          Low-pressure, metastable growth of diamond and "diamondlike" phases.

          Diamond may be grown at low pressures where it is the metastable form of carbon. Recent advances in a wide variety of plasma and electrical discharge methods have led to dramatic increases in growth rates. All of these methods have certain aspects in common, namely, the presence of atomic hydrogen and the production of energetic carbon-containing fragments under conditions that support high mobilities on the diamond surface. Some understanding of the processes taking place during nucleation and growth of diamond has been achieved, but detailed molecular mechanisms are not yet known. Related research has led to the discovery of a new class of materials, the "diamondlike" phases. Vapor-grown diamond and diamondlike materials may have eventual applications in abrasives, tool coatings, bearing surfaces, electronics, optics, tribological surfaces, and corrosion protection.
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            Epitaxial Growth of Metals on Rocksalt Faces Cleaved in Vacuum. II. Orientation and Structure of Gold Particles Formed in Ultrahigh Vacuum

            Shozo Ino (1966)
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              Diamond crystal growth by plasma chemical vapor deposition

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                Author and article information

                Journal
                Applied Physics Letters
                Appl. Phys. Lett.
                AIP Publishing
                0003-6951
                1077-3118
                April 24 1989
                April 24 1989
                : 54
                : 17
                : 1659-1661
                Article
                10.1063/1.101297
                debb8c9c-ad37-4a30-ab42-89ef778d58ff
                © 1989
                History

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