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首页> 外文期刊>Biomacromolecules >PoIyvinylamine-graft-TEMPO Adsorbs onto, Oxidizes, and Covalently Bonds to Wet Cellulose
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PoIyvinylamine-graft-TEMPO Adsorbs onto, Oxidizes, and Covalently Bonds to Wet Cellulose

机译:聚乙烯胺接枝TEMPO吸附到湿纤维素上,并氧化并与之共价键

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摘要

Described is a new, greener approach to increasing adhesion between wet cellulose surfaces. Polyvinylamine (PVAm) with grafted TEMPO spontaneously adsorbs onto cellulose and oxidizes the C6 hydroxyl to aldehyde groups that react to form covalent bonds with primary amines on PVAm. Grafted TEMPO offers two important advantages over solutions of low-molecular-weight water-soluble TEMPO derivatives. First, the oxidation of porous cellulose wood fibers is restricted to the exterior surfaces accessible to high-molecular-weight PVAm. Thus, fibers are not weakened by excessive oxidation of the interior fiber wall surfaces. The second advantage of tethered TEMPO is that the total dose of TEMPO required to oxidize dilute fiber suspensions is much less than that required by water-soluble TEMPO derivatives. PVAm-TEMPO is stable under oxidizing conditions. The oxidation activity of the immobilized TEMPO was demonstrated by the conversion of methylglyoxal to pyruvic acid.
机译:描述了一种新的,更绿色的方法,用于增加湿纤维素表面之间的粘附力。接枝TEMPO的聚乙烯胺(PVAm)自发吸附在纤维素上,并将C6羟基氧化为醛基,后者与PVAm上的伯胺反应形成共价键。与低分子量水溶性TEMPO衍生物的溶液相比,嫁接TEMPO具有两个重要的优势。首先,多孔纤维素木纤维的氧化仅限于高分子量PVAm可接触的外表面。因此,纤维不会由于内部纤维壁表面的过度氧化而变弱。系链TEMPO的第二个优点是,氧化稀纤维悬浮液所需的TEMPO总剂量比水溶性TEMPO衍生物所需的总剂量少得多。 PVAm-TEMPO在氧化条件下稳定。通过甲基乙二醛向丙酮酸的转化证明了固定的TEMPO的氧化活性。

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