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采用包被有过氧化氢酶的金纳米粒子的层层自组装多层膜。

Layer-by-layer assembled multilayers using catalase-encapsulated gold nanoparticles.

机构信息

School of Advanced Materials Engineering, Kookmin University, Seoul, Korea.

出版信息

Nanotechnology. 2010 Sep 17;21(37):375702. doi: 10.1088/0957-4484/21/37/375702. Epub 2010 Aug 20.

Abstract

We introduce a novel and versatile approach for the preparation of multilayers, based on catalase-encapsulated gold nanoparticles (CAT-Au(NP)), allowing electrostatic charge reversal and structural transformation through pH adjustment. CAT-Au(NP), which are synthesized directly from CAT stabilizer, can be electrostatically assembled with anionic and cationic PEs as a result of the charge reversal of the catalase stabilizers through pH control. In particular, at pH 5.2, near the pI of catalase, dispersed CAT-Au(NP) are structurally transformed into colloidal or network CAT-Au(NP) nanocomposites. Furthermore, we demonstrate that the layer-by-layer assembled multilayers composed of PEs and CAT-Au(NP) induce an effective electron transfer between CAT and the electrode as well as a high loading of CAT and Au(NP), and resultantly exhibit a highly catalytic activity toward H(2)O(2).

摘要

我们介绍了一种新颖且多功能的多层制备方法,基于包裹有过氧化氢酶的金纳米粒子(CAT-Au(NP)),通过 pH 值调节实现静电电荷反转和结构转变。CAT-Au(NP)可直接从 CAT 稳定剂合成,由于 CAT 稳定剂通过 pH 控制发生电荷反转,因此可以与阴离子和阳离子 PE 静电组装。特别是在 pH 5.2 附近,接近 CAT 的等电点时,分散的 CAT-Au(NP)会结构转变成胶体或网状 CAT-Au(NP)纳米复合材料。此外,我们证明了由 PE 和 CAT-Au(NP)组装而成的层层组装的多层结构可以在 CAT 和电极之间有效传递电子,同时还能实现 CAT 和 Au(NP)的高负载量,从而对 H(2)O(2)表现出高度的催化活性。

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