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Convenient design of porous and heteroatom self-doped carbons for CO2 capture

机译:方便设计多孔和杂原子自掺杂碳的二氧化碳捕获

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摘要

Porous and heteroatoms self-doped carbon (PHCs) materials are synthesized for the first time by employing carbonization of casein with ZnCl2 at a temperature of 800 degrees C. The synthesis involves a one-step solid state carbonization cum activation to synthesize PHCs with high specific surface areas and surface functionalization with nitrogen and oxygen. The textural properties of PHCs including specific surface area, pore volume and pore size can easily be controlled by adjusting the activation amounts of ZnCl2 The optimized material (PHC4) is synthesized with ZnCl2/casein impregnation ratio of 4 and it shows a high specific surface area (1080 m 2 g(-1)) and an appreciable amount of heteroatoms, nitrogen (4.4%) and oxygen (4.7%). PHC4 exhibits a high CO2 adsorption capacity at 0 degrees C/1 bar (3.5 mmol g(-1)) and 0 degrees C/30 bar (15.8 mmol g(-1)). Additionally, the presence of heteroatoms on the surface results in enhancement of interactions between CO2 and the adsorbents which are evident from a high value of isosteric heat of adsorption (similar to 35 kJ mol(-1)) calculated using Clausius Clapeyron's equation. The reported activation synthesis strategy could be explored further to devise advanced functional nanomaterials for specific adsorption applications.
机译:通过在800℃的温度下使用酪蛋白碳化,首次合成多孔和杂原子的自掺杂碳(PHCS)材料。合成涉及一步固态碳化暨活化以合成具有高特异性的PHCs用氮气和氧气表面区域和表面官能化。通过调节优化的材料(PHC4)的激活量,通过ZnCl2 /酪蛋白浸渍率为4,通过调节ZnCl 2的活化量来容易地控制包括比表面积,孔体积和孔径的PHC的纹理性质,并显示出高比表面积(1080 m 2 g(-1))和可明显的杂原子,氮(4.4%)和氧(4.7%)。 PHC4在0℃/ 1巴(3.5mmol G(-1))和0℃/ 30巴(15.8mmol G(-1))中表现出高CO 2吸附容量。另外,表面上的杂原子的存在导致CO 2和吸附剂之间的相互作用的增强,这是由使用Clausius Clapeyron等式计算的高度的吸附剂的高值(类似于35kJ摩尔(-1))。可以进一步探索报告的活化合成策略,以设计用于特异性吸附应用的先进的功能纳米材料。

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