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Synthesis of diamond crystals from oxygen-acetylene flames on a metal substrate at low temperature

机译:低温下由氧-乙炔火焰在金属基底上合成金刚石晶体

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Diamond films and particles that were synthesized by deposition from oxyacetylene flame on the molybdenum substrates under atmospheric conditions. The study deals with morphological evolution of diamond films in combustion synthesis at different temperatures of the substrate as a basis for understanding the nucleation and growth mechanisms of the diamond phase. The films and particles were studied by scanning and transmission electron microscopes and were characterized by Raman spectroscopy. The best results, namely, a polycrystalline diamond film and perfect octahedral crystals, were obtained at R (O-2/C2H2) = 1.0, gas flow rate F= 2.21 min(-1), distance between flame-corn and the surface of the substrate d=2 mm. Raman shift: 1332 cm(-1), the crystal growth rate: 50 Angstrom s(-1). It has been stated that diamond particles on molybdenum surface can be grown at the surface temperature T = 873-1123 K which is lower by ca 100-150 K than the temperature reported in the known studies of the flame method. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 12]
机译:通过在大气条件下从氧乙炔火焰沉积在钼基材上合成的金刚石薄膜和颗粒。这项研究涉及在不同温度下的基底燃烧合成中金刚石膜的形态演变,以此为基础了解金刚石相的成核和生长机理。通过扫描和透射电子显微镜研究薄膜和颗粒,并通过拉曼光谱表征。最佳结果是,在R(O-2 / C2H2)= 1.0,气体流速F = 2.21 min(-1),火焰玉米与火焰表面之间的距离下获得多晶金刚石膜和完美的八面体晶体。基板d = 2mm。拉曼位移:1332 cm(-1),晶体生长速率:50埃·s(-1)。已经指出,钼表面上的金刚石颗粒可以在表面温度T = 873-1123 K下生长,该温度比火焰方法的已知研究报告的温度低约100-150K。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:12]

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