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Titlebook: Surface Engineering of Polymer Membranes; Zhikang Xu,Lingshu Wan,Xiaojun Huang Book 2009 Springer-Verlag Berlin Heidelberg 2009 ZJUP.antif

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He had been ‘an obscure practiser of physic amongst the lower people’, and for the greater part of Johnson’s residence in London, Levet ‘had an apartment in his house or chambers, and waited upon him every morning, through the whole course of his late and tedious breakfast. He was of a strange, gro
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Surface Modification by Macromolecule Immobilization,ydrophobic surface and poor biocompatibility, cause many side effects in practice and hinder further applications. Grafting a new layer onto a membrane surface by macromolecule immobilization is a promising solution for these problems. In addition, macromolecule immobilization can endow the existing
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Membranes with Glycosylated Surface,lso play important roles in many biological processes. Using them as modifiers to modify the membrane surface, which is also called membrane surface glycosylation, can offer properties of both anti-non-specific adsorption and specific recognition. In this chapter we introduce some research in which
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Molecularly Imprinted Membranes,nd already rapid developments have been achieved in recent years. A molecularly imprinted membrane is characterized by selective recognition, high binding capacity and excellent permeability. It is helpful for separation in large-scale applications and especially for the recognition of natural bioma
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Membrane with Biocatalytic Surface,apter intends to outline the fabrication of a biocatalytic membrane surface through enzyme immobilization. The effects of these kinds of membrane materials and immobilization approaches, as well as methods of surface modification on the properties of enzyme-immobilized membranes are discussed. Furth
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