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Synthesis of nano-polycrystalline diamond from glassy carbon at pressures up to 25 GPa

机译:从玻璃碳合成纳米多晶金刚石,压力高达25GPa

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Nano-polycrystalline diamond (NPD) with various grain sizes has been synthesized from glassy carbon at pressures 15-25 GPa and temperatures 1700-2300 degrees C using multianvil apparatus. The minimum temperature for the synthesis of pure NPD, below which a small amount of compressed graphite was formed, significantly increased with pressure from similar to 1700 degrees C at 15 GPa to similar to 1900 degrees C at 25 GPa. The NPD having grain sizes less than similar to 50 nm was synthesized at temperatures below similar to 2000 degrees C at 15 GPa and similar to 2300 degrees C at 25 GPa, above which significant grain growth was observed. The grain size of NPD decreases with increasing pressure and decreasing temperature, and the pure NPD with grain sizes less than 10 nm is obtained in a limited temperature range around 1800-2000 degrees C, depending on pressure. The pure NPD from glassy carbon is highly transparent and exhibits a granular nano-texture, whose grain size is tunable by selecting adequate pressure and temperature conditions.
机译:具有各种晶粒尺寸的纳米多晶金刚石(NPD)已从玻璃碳在15-25GPa的压力下合成,并使用多元化装置温度1700-2300℃。合成纯NPD的最小温度以下,下面形成少量压缩石墨,随着15GPa的15gga在25gPa的15gPa中,在15GPa中的压力显着增加。在与2000℃下的温度下合成具有小于50nm的晶粒尺寸的NPD在15GPa的温度下合成,并且在25gPa处类似于2300℃,以上观察到显着的晶粒生长。 NPD的晶粒尺寸随着压力的增加和温度的增加而降低,并且根据压力,在约1800-2000摄氏度约为10nm的有限温度范围内获得小于10nm的纯NPD。来自玻璃碳的纯NPD是高度透明的,并且表现出粒状纳米纹理,其晶粒尺寸通过选择足够的压力和温度条件来调节。

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