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Synthesis and Characterization of an SWCNT@HKUST-1Composite: Enhancing the CO2 Adsorption Properties of HKUST-1

机译:SWCNT @ HKUST-1的合成与表征复合材料:提高HKUST-1的CO2吸附性能

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摘要

Synthesis of a new HKUST-1 composite based on single-walled carbon nanotubes (SWCNTs) was successfully achieved (SWCNT@HKUST-1). SWCNTs were used as templates to grow rod-like HKUST-1 crystals over the surface of the nanotubes. N2 adsorption properties showed an increment on the surface area and pore volume for the SWCNT@HKUST-1 composite. Furthermore, the CO2 capture increased, from 7.92 to 8.75 mmol g–1 at 196 K up to 100 kPa, for the SWCNT@HKUST-1 composite. This enhancement was directly associated with the increase of the surface area of the composite. Additionally, an increase in the CO2 heat of adsorption was estimated, from 30 to 39.1 kJ mol–1 for the SWCNT@HKUST-1 composite. In situ Raman experiments corroborated the favored CO2 adsorption for the composite and provided an insight into the augmented hydrophobicity of the SWCNT@HKUST-1. Ethanol adsorption isotherms corroborated an increase in the hydrophobicity of the material upon the incorporation of carbon nanotubes.
机译:成功完成了基于单壁碳纳米管(SWCNT)的新型HKUST-1复合材料的合成(SWCNT @ HKUST-1)。 SWCNT被用作模板,以在纳米管表面上生长棒状HKUST-1晶体。对于SWCNT @ HKUST-1复合材料,N2吸附性能显示出表面积和孔体积的增加。此外,SWCNT @ HKUST-1复合材料在196 K到100 kPa时,CO2捕获量从7.92 mmol增加到8.75 mmol g –1 。这种增强与复合材料表面积的增加直接相关。另外,据估计,SWCNT @ HKUST-1复合材料的二氧化碳吸附热增加,从30增加到39.1 kJ mol -1 。原位拉曼实验证实了复合材料有利的CO2吸附,并提供了SWCNT @ HKUST-1疏水性增强的见解。乙醇吸附等温线证实了在掺入碳纳米管后材料疏水性的增加。

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