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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Nitrogen-doped porous carbon nanosheets derived from poly(ionic liquid)s: hierarchical pore structures for efficient CO2 capture and dye removal
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Nitrogen-doped porous carbon nanosheets derived from poly(ionic liquid)s: hierarchical pore structures for efficient CO2 capture and dye removal

机译:源自离子液体的氮掺杂多孔碳纳米片:分层的孔结构,可有效捕获和去除二氧化碳

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摘要

Poly(ionic liquid) has recently served as an important precursor for nitrogen-doped functional porous carbons. It was applied here in a facile one-pot approach to synthesize nitrogen-doped porous carbon nanosheets (NPCNSs) using C3N4 nanosheets as sacrificial templates. C3N4 nanosheets are found to improve the carbonization yield and nitrogen content of NPCNSs and additionally facilitate the formation of a unique pore structure. Without post-treatments or activation steps, the as-synthesized NPCNS readily reaches a specific surface area above 1100 m(2) g(-1) with hierarchical micro-/ meso-/ macropore structures while keeping a high nitrogen content (17.4 wt%). More significantly, the NPCNS is able to deliver not only a high CO2 adsorption capacity with outstanding reversibility, but also an unprecedented capacity in methylene blue uptake by 962.1 mg g(-1), which is among the few highest ever reported for wastewater, with excellent reusability.
机译:聚离子液体最近已成为掺氮功能多孔碳的重要前体。在这里它以一种简便的一锅法应用,使用C3N4纳米片作为牺牲模板来合成氮掺杂的多孔碳纳米片(NPCNS)。发现C3N4纳米片可提高NPCNSs的碳化收率和氮含量,并有助于形成独特的孔结构。无需后处理或活化步骤,合成后的NPCNS即可轻松达到1100 m(2)g(-1)以上的比表面积,具有分级的微/中观/大孔结构,同时保持较高的氮含量(17.4 wt% )。更重要的是,NPCNS不仅能够提供高的CO2吸附能力和出色的可逆性,而且还具有962.1 mg g(-1)的前所未有的亚甲基蓝吸收能力,这是有史以来报道的最高的废水排放量之一。出色的可重用性。

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