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以漆酶/O为催化剂合成聚苯胺

Synthesizing Polyaniline With Laccase/O as Catalyst.

作者信息

Walde Peter, Kashima Keita, Ćirić-Marjanović Gordana

机构信息

Laboratory for Multifunctional Materials, Department of Materials, ETH, Zurich, Switzerland.

Department of Chemistry and Bioengineering, National Institute of Technology, Oyama College, Oyama, Japan.

出版信息

Front Bioeng Biotechnol. 2019 Jul 10;7:165. doi: 10.3389/fbioe.2019.00165. eCollection 2019.

Abstract

The polymerization of aniline to polyaniline (PANI) can be achieved chemically, electrochemically or enzymatically. In all cases, the products obtained are mixtures of molecules which are constituted by aniline units. Depending on the synthesis conditions there are variations (i) in the way the aniline molecules are connected, (ii) in the average number of aniline units per molecule, (iii) in the oxidation state, and (iv) in the degree of protonation. For many possible applications, the synthesis of electroconductive PANI with -N-C-coupled aniline units in their half-oxidized and protonated state is of interest. This is the emeraldine salt form of PANI, abbreviated as PANI-ES. The enzymatic synthesis of PANI-ES is an environmentally friendly alternative to conventional chemical or electrochemical methods. Although many studies have been devoted to the synthesis of PANI-ES by using heme peroxidases with added hydrogen peroxide (HO) as the oxidant, the application of laccases is of particular interest since the oxidant for these multicopper enzymes is molecular oxygen (O) from air, which is beneficial from environmental and economic points of view. , laccases participate in the synthesis and degradation of lignin. Various attempts of synthesizing PANI-ES with laccase/O in slightly acidic aqueous media from aniline or the linear aniline dimer PADPA (-aminodiphenylamine) are summarized. Advances in the understanding of the positive effects of soft dynamic templates, as chemical structure guiding additives (anionic polyelectrolytes, micelles, or vesicles), for obtaining PANI-ES-rich products are highlighted. Conceptually, some of these template effects appear to be related to the effect "dirigent proteins" exert in the biosynthesis of lignin. In both cases intermediate radicals are formed enzymatically which then must react in a controlled way in follow-up reactions for obtaining the desired products. These follow-up reactions are controlled to some extent by the templates or specific proteins.

摘要

苯胺聚合成聚苯胺(PANI)可通过化学法、电化学法或酶法实现。在所有情况下,所得产物都是由苯胺单元构成的分子混合物。根据合成条件,存在以下几方面的差异:(i)苯胺分子的连接方式;(ii)每个分子中苯胺单元的平均数量;(iii)氧化态;(iv)质子化程度。对于许多可能的应用而言,合成具有 -N-C- 偶联苯胺单元且处于半氧化和质子化状态的导电聚苯胺很有意义。这就是聚苯胺的翡翠盐形式,简称为 PANI-ES。聚苯胺 -ES 的酶法合成是传统化学或电化学方法的一种环境友好替代方法。尽管许多研究致力于使用添加过氧化氢(HO)作为氧化剂的血红素过氧化物酶来合成聚苯胺 -ES,但漆酶的应用特别受关注,因为这些多铜酶的氧化剂是空气中的分子氧(O),从环境和经济角度来看这是有益的。此外,漆酶参与木质素的合成和降解。总结了在微酸性水性介质中用漆酶/O 从苯胺或线性苯胺二聚体 PADPA(-氨基二苯胺)合成聚苯胺 -ES 的各种尝试。强调了在理解软动态模板(作为化学结构导向添加剂,如阴离子聚电解质、胶束或囊泡)对获得富含聚苯胺 -ES 产物的积极作用方面取得的进展。从概念上讲,其中一些模板效应似乎与“定向蛋白”在木质素生物合成中发挥的作用有关。在这两种情况下,都会通过酶促形成中间自由基,然后这些自由基必须在后续反应中以可控方式反应以获得所需产物。这些后续反应在一定程度上受模板或特定蛋白质的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea9f/6635843/120cf25e567d/fbioe-07-00165-g0001.jpg

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