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离子液体重构纤维素复合材料作为生物催化剂固定化的固体载体基质。

Ionic liquid-reconstituted cellulose composites as solid support matrices for biocatalyst immobilization.

作者信息

Turner Megan B, Spear Scott K, Holbrey John D, Daly Daniel T, Rogers Robin D

机构信息

Center for Green Manufacturing, Department of Chemistry, The University of Alabama, Tuscaloosa, Alabama 35487, USA.

出版信息

Biomacromolecules. 2005 Sep-Oct;6(5):2497-502. doi: 10.1021/bm050199d.

Abstract

Preparation of cellulose-polyamine composite films and beads, which provide high loading of primary amines on the surface allowing direct one-step bioconjugation of active species, is reported using an ionic liquid (IL) dissolution and regeneration process. Films and bead architectures were prepared and used as immobilization supports for laccase as a model system demonstrating the applicability of this approach. Performance of these materials, compared to commercially available products, has been assessed using millimeter-sized beads of the composites and the lipase-catalyzed transesterification of ethyl butyrate.

摘要

据报道,采用离子液体(IL)溶解和再生工艺制备了纤维素-多胺复合膜和珠子,这些材料在表面提供了高负载的伯胺,可实现活性物种的直接一步生物共轭。制备了膜和珠子结构,并将其用作漆酶的固定化载体,作为一个模型系统来证明这种方法的适用性。与市售产品相比,已使用复合材料的毫米级珠子和丁酸乙酯的脂肪酶催化酯交换反应来评估这些材料的性能。

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