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新型 rht 型金属有机骨架经酰亚胺基团修饰后可从原始电厂烟道气中高效捕集和化学固定二氧化碳。

New rht-Type Metal-Organic Frameworks Decorated with Acylamide Groups for Efficient Carbon Dioxide Capture and Chemical Fixation from Raw Power Plant Flue Gas.

机构信息

State Key Laboratory of Fine Chemicals, Dalian University of Technology , Dalian 116024, China.

State Key Laboratory of Coordination Chemistry, Nanjing University , Nanjing 210093, China.

出版信息

ACS Appl Mater Interfaces. 2016 Nov 23;8(46):31746-31756. doi: 10.1021/acsami.6b13928. Epub 2016 Nov 14.

Abstract

The combination of carbon dioxide capture and chemical fixation in a one-pot process is attractive for both chemists and governments. The cycloaddition of carbon dioxide with epoxides to produce cyclic carbonates is an atomic economical reaction without any side products. By incorporating acylamide to enhance the binding affinity toward CO, new rht-type metal-organic frameworks (MOFs) with (3, 28) and (3, 24) connected units were constructed. Zn-NTTA with two types of dinuclear paddlewheel building blocks-{Zn(OOC)} and {Zn(OOC)}. The high uptake of CO (115.6 cm·g) and selectivity over N (30:1) at 273 K indicated that these MOFs are excellent candidates for postcombustion CO isolation and capture. The MOFs feature high catalytic activity, rapid dynamics of transformation and excellent stability with turnover number (TON) values up to 110 000 per paddlewheel unit after 5 × 6 rounds of recyclability, demonstrating that they are promising heterogeneous catalysts for CO cyclo-addition to value-added cyclic carbonates. The cycloaddition of epoxides with wet gases demonstrated that the catalyst activity was not affected by moisture, and the indices of the PXRD patterns of the bulk samples filtered from the catalytic reaction revealed that the crystallinities were maintained. The combination of the selective capture and catalytic transformation in one-pot enables the use of a negative-cost feedstock-raw power plant flue gas without any separation and purification-revealing the broad prospects of such MOFs for practical CO fixation in industry.

摘要

将二氧化碳捕获和化学固定在一锅工艺中结合对于化学家和政府来说都很有吸引力。二氧化碳与环氧化物加成生成环状碳酸酯是一种原子经济反应,没有任何副产物。通过引入酰亚胺来增强对 CO 的结合亲和力,构建了具有(3,28)和(3,24)连接单元的新型 rht 型金属-有机骨架(MOFs)。Zn-NTTA 具有两种双核滑梭建筑块 - {Zn(OOC)}和{Zn(OOC)}。在 273 K 时,CO 的高吸收量(115.6 cm·g)和对 N 的选择性(30:1)表明这些 MOFs 是后燃烧 CO 分离和捕获的优秀候选物。这些 MOFs 具有高催化活性、快速转化动力学和出色的稳定性,每个滑梭单元的周转数(TON)值高达 110000 次,经过 5×6 次可重复使用性循环后仍具有催化活性,表明它们是 CO 环加成到增值环状碳酸酯的有前途的多相催化剂。环氧化物与湿气体的加成反应表明,催化剂活性不受水分影响,从催化反应中过滤出的块状样品的 PXRD 图谱指标表明其结晶度得以保持。一锅法中选择性捕获和催化转化的结合使得可以使用负成本的原料 - 原始电厂烟道气,而无需进行任何分离和纯化 - 这揭示了此类 MOFs 在工业中实际 CO 固定方面的广阔前景。

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