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一种高效的一步缩合和活化策略,用于合成具有最佳微孔尺寸的多孔碳,以实现高选择性CO₂吸附。

An efficient one-step condensation and activation strategy to synthesize porous carbons with optimal micropore sizes for highly selective CO₂ adsorption.

作者信息

Wang Jiacheng, Liu Qian

机构信息

State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics, Chinese Academy of Science, Shanghai 200050, P. R. China.

出版信息

Nanoscale. 2014 Apr 21;6(8):4148-56. doi: 10.1039/c3nr05825e. Epub 2014 Mar 7.

Abstract

A series of microporous carbons (MPCs) were successfully prepared by an efficient one-step condensation and activation strategy using commercially available dialdehyde and diamine as carbon sources. The resulting MPCs have large surface areas (up to 1881 m(2) g(-1)), micropore volumes (up to 0.78 cm(3) g(-1)), and narrow micropore size distributions (0.7-1.1 nm). The CO₂ uptakes of the MPCs prepared at high temperatures (700-750 °C) are higher than those prepared under mild conditions (600-650 °C), because the former samples possess optimal micropore sizes (0.7-0.8 nm) that are highly suitable for CO₂ capture due to enhanced adsorbate-adsorbent interactions. At 1 bar, MPC-750 prepared at 750 °C demonstrates the best CO₂ capture performance and can efficiently adsorb CO₂ molecules at 2.86 mmol g(-1) and 4.92 mmol g(-1) at 25 and 0 °C, respectively. In particular, the MPCs with optimal micropore sizes (0.7-0.8 nm) have extremely high CO₂/N₂ adsorption ratios (47 and 52 at 25 and 0 °C, respectively) at 1 bar, and initial CO₂/N₂ adsorption selectivities of up to 81 and 119 at 25 °C and 0 °C, respectively, which are far superior to previously reported values for various porous solids. These excellent results, combined with good adsorption capacities and efficient regeneration/recyclability, make these carbons amongst the most promising sorbents reported so far for selective CO₂ adsorption in practical applications.

摘要

采用市售二醛和二胺作为碳源,通过高效的一步缩合和活化策略成功制备了一系列微孔碳(MPC)。所得的MPC具有大的表面积(高达1881 m² g⁻¹)、微孔体积(高达0.78 cm³ g⁻¹)和窄的微孔尺寸分布(0.7 - 1.1 nm)。高温(700 - 750 °C)制备的MPC对CO₂的吸附量高于温和条件(600 - 650 °C)下制备的,因为前者样品具有最佳的微孔尺寸(0.7 - 0.8 nm),由于增强的吸附质 - 吸附剂相互作用,非常适合CO₂捕获。在1 bar下,750 °C制备的MPC - 750表现出最佳的CO₂捕获性能,在25和0 °C时分别能有效吸附2.86 mmol g⁻¹和4.92 mmol g⁻¹的CO₂分子。特别是,具有最佳微孔尺寸(0.7 - 0.8 nm)的MPC在1 bar下具有极高的CO₂/N₂吸附比(25和0 °C时分别为47和52),在25 °C和0 °C时的初始CO₂/N₂吸附选择性分别高达81和119,远优于先前报道的各种多孔固体的值。这些优异的结果,结合良好的吸附容量和高效的再生/循环利用性,使这些碳成为迄今为止报道的在实际应用中用于选择性CO₂吸附的最有前景的吸附剂之一。

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