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一体化:微孔聚咔唑聚合物对硝基爆炸物污染物的传感、吸附去除及光催化降解

All-in-One: Sensing, Adsorptive Removal, and Photocatalytic Degradation of Nitro-Explosive Contaminants by Microporous Polycarbazole Polymer.

作者信息

Manna Anupam, Das Monojit, Mukherjee Soumya, Das Sanjib

机构信息

Materials Chemistry Department, CSIR-Institute of Minerals and Materials Technology, Bhubaneswar, 751 013, India.

Academy of Scientific & Innovative Research (AcSIR), CSIR- Human Resource Development Centre, (CSIR-HRDC) Campus, Ghaziabad, 201 002, India.

出版信息

Macromol Rapid Commun. 2021 Jan;42(2):e2000469. doi: 10.1002/marc.202000469. Epub 2020 Nov 26.

Abstract

A highly multitasking 3D polycarbazole based microporous organic polymer (ACzMOP) is rationally prepared via a low-cost FeCl catalyzed polymerization route utilizing a newly developed Td -symmetric adamantane core tetracarbazolic monomer. The nitrogen-rich ACzMOP integrated with photo-redox active electron-rich π-conjugated polycarbazole modules featuring large BET surface area of 1568 m  g  , pore volume of 1.58 cc g  , excellent physicochemical stability, and strong fluorescence in both aqueous and solid phases. Aqueous suspension including ACzMOP coated paper strip is highly responsive to the aqueous solution of nitroaromatics especially 2,4-dinitrotoluene, an unavoidable intermediate of 2,4,6-trinitrotoluene contamination, with ultra-trace level detection capability (up to 0.32 ppb). The thin layer of solid polymer is capable of detecting nitroaromatic vapors, especially nitrotoluenes in a very sensitive manner. Moreover, the polymer exhibit record uptake of nitrotoluenes and nitrophenols with maximum uptake capability up to 510 mg g  setting a new benchmark among known porous materials. The polymer efficiently degrades toxic 4-nitrophenol to the value-added 4-aminophenol precursor (TOF = 0.143 h  ) via photocatalytic pathway. For the very first time, ACzMOP as a single material system is capable of efficiently sensing and removing all sorts of nitroaromatic contaminations with regenerability under mild washing/vacuum conditions.

摘要

通过低成本的FeCl催化聚合路线,利用新开发的Td对称金刚烷核心四咔唑单体,合理制备了一种高度多任务的基于聚咔唑的3D微孔有机聚合物(ACzMOP)。富含氮的ACzMOP与光氧化还原活性富电子π共轭聚咔唑模块集成,具有1568 m² g⁻¹的大BET表面积、1.58 cc g⁻¹的孔体积、优异的物理化学稳定性以及在水相和固相中的强荧光。包含ACzMOP涂层纸条的水悬浮液对硝基芳烃水溶液,特别是2,4-二硝基甲苯(2,4,6-三硝基甲苯污染的不可避免中间体)具有高度响应,具有超痕量检测能力(高达0.32 ppb)。固体聚合物薄层能够以非常灵敏的方式检测硝基芳烃蒸气,特别是硝基甲苯。此外,该聚合物对硝基甲苯和硝基苯酚的吸收量创纪录,最大吸收能力高达510 mg g⁻¹,在已知多孔材料中树立了新的标杆。该聚合物通过光催化途径将有毒的4-硝基苯酚有效降解为增值的4-氨基苯酚前体(TOF = 0.143 h⁻¹)。首次,ACzMOP作为单一材料系统能够在温和的洗涤/真空条件下高效传感和去除各种硝基芳烃污染物,并具有可再生性。

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