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中孔泡沫材料孔隙中交联氯过氧化物酶聚集体的形成:通过小角中子散射表征及催化性能研究

Formation of cross-linked chloroperoxidase aggregates in the pores of mesocellular foams: characterization by SANS and catalytic properties.

作者信息

Jung Dirk, Paradiso Michelangelo, Wallacher Dirk, Brandt Astrid, Hartmann Martin

机构信息

University of Augsburg, Germany.

出版信息

ChemSusChem. 2009;2(2):161-4. doi: 10.1002/cssc.200800245.

Abstract

No escape: The formation of cross-linked chloroperoxidase aggregates (CPO-CLEAs) in the pores of mesocellular foam materials results in active biocatalysts that are more resistant to leaching than the conventional catalyst prepared by physisorption of chloroperoxidase. Small-angle neutron scattering (SANS) experiments clearly confirm that the CPO-CLEAs are located in the pores of the mesocellular foams.

摘要

无处可逃

中孔泡沫材料孔隙中交联氯过氧化物酶聚集体(CPO-CLEAs)的形成产生了活性生物催化剂,其比通过氯过氧化物酶物理吸附制备的传统催化剂更耐浸出。小角中子散射(SANS)实验清楚地证实CPO-CLEAs位于中孔泡沫的孔隙中。

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