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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Energy efficient synthesis of highly ordered mesoporous carbon nitrides with uniform rods and their superior CO2 adsorption capacity
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Energy efficient synthesis of highly ordered mesoporous carbon nitrides with uniform rods and their superior CO2 adsorption capacity

机译:具有均匀棒的高度有序的介孔碳氮化物的节能合成及其优异的CO 2吸附能力

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摘要

An energy efficient route for the synthesis of mesoporous carbon nitride (MCN) materials with highly ordered mesopores and a rod shaped morphology from uncalcined mesoporous SBA-15 (SEW-SBA-15) templates with a controlled morphology through a nanocasting technique using ethylenediamine and carbon tetrachloride as carbon and nitrogen sources is introduced. Porosity in the SBA-15 templates is created by washing with ethanol whereas the controlled rod shaped morphology in the nanotemplates is obtained by modifying the synthesis conditions from stirring to static conditions. The prepared MCN from the SEW-SBA-15 templates retains the morphological and structural order of the template. By tuning the pore diameter of SEW-SBA-15, it is possible to prepare MCN with tuneable pore diameters, which exhibits a specific BET surface area of 596-655 m(2) g(-1), pore diameter of 2.8-5.7 nm, and specific pore volume of 0.49-0.89 cm(3) g(-1). These values are similar to those of MCN-1 prepared from the calcined SBA-15 template with an irregular morphology. The SEW-MCN-1-T samples are used as CO2 adsorbents at 0, 10 and 25 degrees C and pressures from 1 up to 30 bar. Among the samples, the SEW-MCN-1-130 sample with the highest specific surface area, uniform particle size and morphology, and the largest pore volume exhibits the highest CO2 uptake capacity of 15.4 mmol g(-1) at 0 degrees C and 30 bar, which is similar to the sample prepared by the calcination route but higher than that of activated carbon and multiwalled carbon nanotubes. This is the first report of the MCN prepared from uncalcined SBA-15 which helps to avoid the required energy intensive calcination step of the template and offers a promising system for CO2 capture.
机译:通过使用乙二胺和碳的纳米核技术,具有高度有序的中孔(MCN)氮化物(MCN)材料的能量有效途径和具有高度有序的中孔和杆状形态的杆状形态,通过纳米胺和碳技术通过纳米核化技术进行受控形态引入了四氯化碳和氮源。通过用乙醇洗涤来产生SBA-15模板中的孔隙率,而通过将合成条件从搅拌到静态条件改变合成条件,通过将合成条件改性来产生孔隙率。来自SEW-SBA-15模板的制备的MCN保留了模板的形态和​​结构阶。通过调节缝合SBA-15的孔径,可以制备具有可调谐孔径的MCN,其特定的BET表面积为596-655 m(2)g(-1),孔径为2.8-5.7 NM,特异性孔体积为0.49-0.89cm(3)g(-1)。这些值类似于由煅烧的SBA-15模板制备的MCN-1,其形态不规则。缝制MCN-1-T样品用作0,10和25℃的CO 2吸附剂,并从1到30巴的压力。在样品中,具有最高的比表面积,均匀粒度和形态的缝合-MCN-1-130样品,并且最大的孔体积在0摄氏度下表现出15.4mmol G(-1)的最高CO 2吸收能力。 30巴,其类似于煅烧路线制备的样品,但高于活性炭和多壁碳纳米管的样品。这是由未煅烧的SBA-15制备的MCN的第一个报告,有助于避免模板所需的能量密集煅烧步骤,并为CO2捕获提供有希望的系统。

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    Univ South Australia Future Ind Inst Div Informat Technol Engn &

    Environm Mawson Lakes Campus Adelaide SA 5095 Australia;

    Univ South Australia Future Ind Inst Div Informat Technol Engn &

    Environm Mawson Lakes Campus Adelaide SA 5095 Australia;

    Univ South Australia Future Ind Inst Div Informat Technol Engn &

    Environm Mawson Lakes Campus Adelaide SA 5095 Australia;

    Univ South Australia Future Ind Inst Div Informat Technol Engn &

    Environm Mawson Lakes Campus Adelaide SA 5095 Australia;

    KAUST SABIC Corp Res &

    Dev Ctr Saudi Basic Ind Corp Thuwal 23955 Saudi Arabia;

    KAUST SABIC Corp Res &

    Dev Ctr Saudi Basic Ind Corp Thuwal 23955 Saudi Arabia;

    Univ South Australia Future Ind Inst Div Informat Technol Engn &

    Environm Mawson Lakes Campus Adelaide SA 5095 Australia;

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  • 正文语种 eng
  • 中图分类 工程材料学;
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