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Characterization of surface oxygen groups on different carbon materials by the Boehm method and temperature programmed desorption

机译:通过Boehm方法和程序升温脱附表征不同碳材料上的表面氧基团

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The surface characteristics of different carbon materials: activated carbon, carbon felt, glassy carbon and a porous carbon monolith were investigated. The specific surface area was examined by the BET method with N2 adsorption, the amount and the type of surface oxygen groups by Boehm titration as well as by temperature-programmed desorption (TPD). By comparing the results obtained using BET analysis with those of TPD and the Boehm method, it was found that the number of surface groups was not proportional to the specific surface area. The total amount of oxygen groups, obtained by TPD, is higher than the amount obtained by Boehm’s method for porous samples. The inconsistencies between these results originate from the fact that the Boehm method is limited to the determination of acidic and basic groups, whereas TPD provides information on the total number of all surface oxygen groups. In addition, the presence of porosity could reduce the solvent-accessible surface in the Boehm method. The TPD profiles of CO evolution showed the presence of a low temperature maximum, below 650 K, which originates from CO2 reduction on the carbon material surface.
机译:研究了不同碳材料的表面特性:活性炭,碳毡,玻璃碳和多孔碳整料。通过BET法用N 2吸附,比表面积通过Boehm滴定以及通过程序升温脱附(TPD)检查表面氧基团的数量和类型。通过将使用BET分析的结果与TPD和Boehm方法的结果进行比较,发现表面基团的数量与比表面积不成比例。通过TPD获得的总氧含量高于通过Boehm方法获得的多孔样品的总氧含量。这些结果之间的不一致是由于Boehm方法仅限于测定酸性和碱性基团,而TPD提供了有关所有表面氧基团总数的信息。另外,在Boehm方法中,孔隙的存在会减少溶剂可及的表面。 TPD的CO逸出曲线表明存在最高温度低于650 K,这是由于碳材料表面的CO2还原所致。

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