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Thermally controlled growth of carbon onions within porous graphitic carbon-detonation nanodiamond monolithic composites

机译:多孔石墨碳爆炸纳米金刚石整体复合材料中碳洋葱的热控生长

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摘要

Unique porous carbon monoliths containing thermally annealed carbon onions, were prepared from a resorcinol formaldehyde precursor rod, containing silica gel acting as a hard template, detonation nanodiamond, and Fe as a graphitisation catalyst. Detonation nanodiamond was converted to carbon onions during controlled pyrolysis under N, where the temperature cycle reached a maximum of 1250 °C. Thermal characterisation and high resolution electron microscopy have confirmed the graphitisation of nanodiamond, and revealed the resulting quasi-spherical carbon onions with an average particle size of 5.24 nm. The bimodal porous composite contains both macropores (5 μm) and mesopores (10 nm), with a BET surface area of 214 m g for a nanodiamond prepared monolith (0.012 wt% nanodiamond in the precursor mixture), approximately twice that of blank monoliths, formed without the addition of nanodiamond, thus providing a new approach to increase surface area of such porous carbon rods. Raman spectroscopy and X-ray photoelectron spectroscopy also confirmed an enhanced graphitisation of the monolithic carbon skeleton resulting from the elevated thermal conductivity of the added nanodiamond. TEM imaging has confirmed the nanodiamond remains intact following pyrolysis at temperatures up to 900 °C.
机译:由间苯二酚甲醛前体棒制备独特的含有热退火碳洋葱的多孔碳整体材料,其中间苯二酚甲醛前体棒含有充当硬模板的硅胶,爆轰纳米金刚石和作为石墨化催化剂的铁。在N下受控热解过程中,爆轰纳米金刚石转化为碳洋葱,其中温度循环达到最高1250°C。热表征和高分辨率电子显微镜已经证实了纳米金刚石的石墨化,并揭示了所得到的准球形碳洋葱,其平均粒径为5.24 nm。双峰多孔复合材料同时包含大孔(5μm)和中孔(10 nm),对于纳米金刚石制备的整料(前体混合物中0.012 wt%纳米金刚石)的BET表面积为214 mg,约为空白整料的两倍无需添加纳米金刚石,从而提供了一种增加此类多孔碳棒表面积的新方法。拉曼光谱法和X射线光电子能谱法也证实了整体碳骨架的石墨化作用增强,这是由于所添加的纳米金刚石的导热性提高所致。 TEM成像已证实纳米金刚石在高达900°C的温度下热解后仍保持完整。

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