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Highly-porous uniformly-sized amidoxime-functionalized cellulose beads prepared by microfluidics with N-methylmorpholine N-oxide

机译:高度多孔均匀型偕胺肟官能化纤维素珠粒,用N-甲基丙酮N-氧化物的微流体制备

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摘要

Uniformly-sized porous cellulose beads functionalized with amidoxime groups were prepared for the first time using a microfluidic method with N-methylmorpholine N-oxide (NMMO) monohydrate as a cellulose solvent. The molten state cellulose dope in NMMO monohydrate (cell/NMMO dope) as a disperse phase and hot mineral oil as a continuous phase were used in a T-junction microfluidic chip to produce uniformly-sized cell/NMMO droplets. Coagulation of the molten state cell/NMMO droplet at high temperature and amidoxime functionalization could prepare the highly-porous spherical amidoxime-functionalized cellulose beads with a uniform fibrous open internal structure. The prepared amidoxime-functionalized cellulose beads showed excellent metal adsorption properties with a maximum adsorption capacity of similar to 80 mg g(-1) in the case of Cu2+/phthalate ions. The newly developed highly-porous cellulose beads can open many new applications with other proper functionalization at the reactive hydroxyl groups of the cellulose.
机译:首次采用微流控方法,以N-甲基吗啉N-氧化物(NMMO)一水合物为纤维素溶剂,制备了具有酰胺肟基功能化的均匀尺寸多孔纤维素微球。在T型结微流控芯片中,使用熔融状态的NMMO一水合物纤维素涂料(cell/NMMO涂料)作为分散相,热矿物油作为连续相,以产生尺寸均匀的cell/NMMO液滴。熔融状态电池/NMMO液滴在高温下的凝固和酰胺肟功能化可以制备具有均匀纤维开放内部结构的高度多孔的酰胺肟功能化纤维素微球。所制备的酰胺肟功能化纤维素微球表现出优异的金属吸附性能,在Cu2+/邻苯二甲酸根离子的情况下,其最大吸附容量类似于80 mg g(-1)。新开发的高度多孔的纤维素珠可以在纤维素的活性羟基上进行其他适当的功能化,从而打开许多新的应用。

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