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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Characterization of Microporosity and Mesoporosity in Carbonaceous Materials by scanning Tunneling Microscopy
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Characterization of Microporosity and Mesoporosity in Carbonaceous Materials by scanning Tunneling Microscopy

机译:扫描隧道显微镜表征碳质材料中的微孔和中孔

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Scanning tunneling microscopy has been employed to characterize the microporous and mesoporous structure of different carbon materials. First, model micropores artificially created on a highly oriented pyrolytic graphite substrate by plasma treatment were studied at the atomic scale: the observed increase in electronic density near the Fermi level around the defect implies an increased adsorptivity of the model micropore region. Second, activated carbon fibers were studied. A spongy mesoporous texture along with slit-shaped microporosity (approx 1 nm) was observed, accounting for the high adsorption properties of this material. For comparison, nonporous thermally treated carbon black and nonactivated carbon fibers with a ultramicroporous texture were also investigated. In the former case, as expected, no sign of extensive microporosity or mesoporosity such as that of the activated carbon fibers was ericountered, in agreement with its poor sorptive capability. In the latter case, the interpretation of the results was rather troublesome, ,ince the minute pore size rendered a reasonably accurate STM imaging difficult.
机译:扫描隧道显微镜已被用来表征不同碳材料的微孔和中孔结构。首先,在原子尺度上研究了通过等离子体处理在高度取向的热解石墨基板上人工创建的模型微孔:在缺陷周围的费米能级附近观察到的电子密度增加表明模型微孔区域的吸附性增加。其次,研究了活性炭纤维。观察到海绵状的中孔结构以及狭缝状的微孔(约1 nm),说明该材料具有高吸附性能。为了进行比较,还研究了具有超微孔结构的无孔热处理炭黑和非活性炭纤维。在前一种情况下,正如预期的那样,没有发现广泛的微孔或中孔的迹象,例如活性炭纤维的迹象,与其吸附能力差相符。在后一种情况下,结果的解释相当麻烦,因为微小的孔径使合理精确的STM成像变得困难。

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