首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >Preparation of N-doped microporous carbon nanospheres by direct carbonization of as-prepared mesoporous silica nanospheres containing cetylpyridinium bromide template
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Preparation of N-doped microporous carbon nanospheres by direct carbonization of as-prepared mesoporous silica nanospheres containing cetylpyridinium bromide template

机译:通过直接碳化制备的含十六烷基溴化吡啶模板的中孔二氧化硅纳米球,制备N掺杂的微孔碳纳米球

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摘要

N-doped microporous carbon nanospheres (MCNs) are prepared directly from the as-prepared mesoporous silica nanospheres (MSNs) with a disordered pore structure by a new, simple and direct carbonization method. The as-prepared MSNs containing cetylpyridinium bromide (CTPB) template are effective for direct carbonization. Neither MSN with a two-dimensional hexagonal pore symmetry nor MSN with cetyltrimethylammonium bromide (CTAB) template is effective for this new method. Thus, this method is very cost-effective and environmentally benign. Furthermore, N-doping into the carbon matrix naturally occurrs during the carbonization process, because of the presence of pyridinium N atoms in the CTPB template. The N-doped MCN material is a good sorbent material for CO2 adsorption owing to the Lewis basic sites of N atoms as well as good microporosity. The low surface coverage isosteirc heat of CO2 adsorption (Q(st)) is calculated by the Clausius-Clapeyron equation using the data obtained at 273 and 298 K, and the calculated value of Q(st) is 58.4 kJ mol(-1). This value is relatively very high compared to the other N-doped porous carbon materials. Both the Lewis basic sites of N atoms and uniform microporosity in the N-doped MCNs are responsible for this high value. (C) 2015 Elsevier Ltd. All rights reserved.
机译:N掺杂的微孔碳纳米球(MCN)是由新制备的具有无序孔结构的介孔二氧化硅纳米球(MSN)通过新颖,简单和直接的碳化方法直接制备的。所制备的含有十六烷基溴化十六烷基吡啶鎓(CTPB)的MSN可直接用于碳化。具有二维六边形孔对称性的MSN或具有十六烷基三甲基溴化铵(CTAB)模板的MSN均不适用于此新方法。因此,该方法非常具有成本效益并且对环境无害。此外,由于在CTPB模板中存在吡啶N原子,因此在碳化过程中自然会向碳基质中掺入N。由于N原子的Lewis碱性位以及良好的微孔性,N掺杂的MCN材料是一种很好的CO2吸附材料。利用在273和298 K处获得的数据,通过Clausius-Clapeyron方程计算CO2吸附的低表面覆盖等温热量(Q(st)),并且Q(st)的计算值为58.4 kJ mol(-1) 。与其他N掺杂的多孔碳材料相比,该值相对很高。 N原子的Lewis碱性位点和N掺杂的MCN中均匀的微孔性都是造成这种高值的原因。 (C)2015 Elsevier Ltd.保留所有权利。

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