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Periodic Mesoporous Organosilica Nanocubes with Ultrahigh Surface Areas for Efficient CO2 Adsorption

机译:具有高效表面积的超高表面积的周期性介孔有机硅纳米粒子

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摘要

Ultrahigh surface area single-crystals of periodic mesoporous organosilica (PMOs) with uniform cubic or truncated-cubic morphology and organic/inorganic components homogeneously distributed over the whole frameworks have successfully been prepared by a sol-gel surfactant-templating method. By tuning the porous feature and polymerization degree, the surface areas of the obtained PMO nanocubes can reach as high as 2370 m2/g, which is the highest for silica-based mesoporous materials. The ultrahigh surface area of the obtained PMO single crystals is mainly resulted from abundant micropores in the mesoporous frameworks. Furthermore, the diameter of the nanocubes can also be well controlled from 150 to 600 nm. The materials show ultrahigh CO2 adsorption capacity (up to 1.42 mmol/g at 273 K) which is much higher than other porous silica materials and comparable to some carbonaceous materials. The adsorption of CO2 into the PMO nanocubes is mainly in physical interaction, therefore the adsorption-desorption process is highly reversible and the adsorption capacity is much dependent on the surface area of the materials. Moreover, the selectivity is also very high (~11 times to N2) towards CO2 adsorption.
机译:通过溶胶-凝胶表面活性剂模板法成功地制备了具有均相立方或截顶立方形态且有机/无机组分均匀分布在整个骨架上的周期性介孔有机硅(PMO)的超高表面积单晶。通过调节多孔性和聚合度,可以使所得的PMO纳米立方体的表面积达到2370 m 2 / g,这是二氧化硅基介孔材料的最高表面积。所获得的PMO单晶的超高表面积主要是由于介孔骨架中大量微孔所致。此外,纳米立方体的直径也可以很好地控制在150至600nm之间。该材料显示出超高的CO2吸附容量(在273 K时高达1.42 mmol / g),远高于其他多孔二氧化硅材料,与某些含碳材料相当。 CO2吸附到PMO纳米立方体中的吸附主要是物理相互作用,因此吸附-解吸过程是高度可逆的,吸附能力在很大程度上取决于材料的表面积。此外,对CO2吸附的选择性也很高(约为N2的11倍)。

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