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首页> 外文期刊>Journal of Molecular Liquids >Modification of cellulose nanocrystal with dual temperature- and CO2-responsive block copolymers for ion adsorption applications
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Modification of cellulose nanocrystal with dual temperature- and CO2-responsive block copolymers for ion adsorption applications

机译:具有双温度和CO2响应嵌段共聚物的离子吸附应用的纤维素纳米晶体的改性

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Cellulose nanocrystal (CNC)-grafted smart polymers have potential applications as adsorbents by providing simple regeneration process. In this study, carbon dioxide (CO2)- and temperature-responsive free block copolymers of N-isopropylacrylamide and (2-dimethylaminoethyl) methacrylate with different block lengths were synthesized using reversible addition-fragmentation chain transfer (RAFT) polymerization. In addition, CNC was modified with the similar block copolymers by surface-initiated RAFT method. The synthesized block copolymers were used in nitrate ion removal from aqueous solutions. The synthesis process was confirmed by Fouriertrans form infrared spectroscopy, proton nuclear magnetic resonance (H-1 NMR) analysis, thermal gravimetric analysis, scanning electron microscopy, and transmission electron microscopy. Stimuli-responsivity of the free polymers was studied by pH measurement, turbidity investigation, and dynamic light scattering analysis. CO2-responsivity of the block copolymers in aqueous solution was confirmed by reduction of pH in the presence of CO2 by protonation of the PDMAEMA blocks. The copolymers with higher length of PDMAEMA showed highly intense CO2-responsivity. Deprotonation of the PDMAEMA units by purging N-2 represents reversible responsivity of the copolymers. Turbidity analysis showed different critical solution temperatures (CST) for the block copolymers with various block lengths. Two different micellar and vesicular morphologies were observed for the self-assembled copolymers at temperatures above and below CST of the copolymers, which is related to the hydrophobic/hydrophilic block ratio. CO2-switched nitrate ion adsorption from aqueous solution at two temperatures (37 and 60 degrees C) was studied by UV-vis spectroscopy using the synthesized products as adsorbent. Adsorption of nitrate ions from aqueous solutions was increased by protonation of the PDMAEMA segments upon CO2 purging. Presence of CNC, morphology of the self-assembled copolymers, temperature, and time of CO2 purging affect the nitrite ion adsorption capacity. The maximum adsorption capacity (420 mg/g) is related to the sample with vesicular assemblies in aqueous solution and higher PDMAEMA block length at temperatures below CST of the block copolymer. N-2 purging resulted in deprotonation of the PDMAEMA blocks and regeneration of the samples. Finally, the CNC substrate can be used in regeneration of the samples with simple filtration process in addition to the stimuli-regeneration process. (C) 2020 Elsevier B.V. All rights reserved.
机译:纤维素纳米晶(CNC) - 移植的智能聚合物通过提供简单的再生过程具有作为吸附剂的潜在应用。在该研究中,使用可逆添加 - 碎片链转移(RAFT)聚合,合成二氧化碳(二氧化碳) - 和N-异丙基丙烯酰胺和(2-二甲基氨基乙基)甲基丙烯酸酯的(2-二甲基氨基乙基)甲基丙烯酸酯的共聚物。此外,通过表面引发的筏法用类似嵌段共聚物改性CNC。合成的嵌段共聚物用于硝酸盐离子从水溶液中除去。通过Fountiertrans形成红外光谱,质子核磁共振(H-1 NMR)分析,热重分析,扫描电子显微镜和透射电子显微镜,并进行合成过程。通过pH测量,浊度调查和动态光散射分析研究了游离聚合物的刺激响应性。通过PDMAEMA嵌段的质子化在CO 2存在下通过降低pH来证实水溶液中嵌段共聚物的CO2响应度。具有较高长度PDMAEMA的共聚物显示出高度强烈的CO 2响应性。通过吹扫N-2对PDMAEMA单元的去质子化表示共聚物的可逆响应性。浊度分析显示出具有各种块长度的嵌段共聚物的不同临界溶液温度(CST)。在共聚物的高于和低于CST的温度下,观察到两种不同的胶束和凹凸形态,与疏水/亲水嵌段比有关。使用合成产物作为吸附剂,通过UV-Vis光谱研究了在两个温度(37和60℃)下的水溶液中的CO 2切换硝酸盐离子吸附。通过CO 2吹扫的PDMAEMA段的质子化通过PDMAEMA段的质子化增加硝酸盐离子的吸附。 CNC的存在,自组装共聚物,温度和CO2吹扫的温度和时间的形态影响亚硝酸根离子吸附能力。最大吸附容量(420mg / g)与嵌段共聚物低于CST的温度下的水溶液中的囊泡组件和更高的PDMAEMA块长度有关。 N-2吹扫导致PDMAEMA嵌段的去质子化和样品再生。最后,除了刺激 - 再生过程之外,CNC衬底还可用于具有简单的过滤过程的样品的再生。 (c)2020 Elsevier B.v.保留所有权利。

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