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电极表面的调谐以增强细菌黏附和反应:近期方法综述。

Tuning of Electrode Surface for Enhanced Bacterial Adhesion and Reactions: A Review on Recent Approaches.

机构信息

Department of Biotechnology, University of Kerala, Kariavattom Campus, Thiruvananthapuram, Kerala 695 581, India.

Department of Chemistry, University of Kerala, Kariavattom Campus, Thiruvananthapuram, Kerala 695 581, India.

出版信息

ACS Appl Bio Mater. 2021 Aug 16;4(8):5809-5838. doi: 10.1021/acsabm.1c00362. Epub 2021 Jul 26.

Abstract

The study of bacterial adhesion and its consequences has great significance in different fields such as marine science, renewable energy sectors, soil and plant ecology, food industry, and the biomedical field. Generally, the adverse effects of microbial surface interactions have attained wide visibility. However, herein, we present distinct approaches to highlight the beneficial aspects of microbial surface interactions for various applications rather than deal with the conventional negative aspects or prevention strategies. The surface microbial reactions can be tuned for useful biochemical or bio-electrochemical applications, which are otherwise unattainable through conventional routes. In this context, the present review is a comprehensive approach to highlight the basic principles and signature parameters that are responsible for the useful microbial-electrode interactions. It also proposes various surface tuning strategies, which are useful for tuning the electrode characteristics particularly suitable for the enhanced bacterial adhesion and reactions. The tuning of surface characteristics of electrodes is discussed with a special reference to the Microbial Fuel Cell as an example.

摘要

细菌黏附及其后果的研究在海洋科学、可再生能源领域、土壤和植物生态学、食品工业以及生物医学领域等具有重要意义。一般来说,微生物表面相互作用的不利影响已经引起了广泛的关注。然而,在这里,我们提出了不同的方法来强调微生物表面相互作用在各种应用中的有益方面,而不是处理传统的负面方面或预防策略。可以通过调整表面微生物反应来实现有用的生化或生物电化学应用,而这些应用通过传统途径是无法实现的。在这种情况下,本综述是一种全面的方法,旨在强调负责有用的微生物-电极相互作用的基本原理和特征参数。它还提出了各种表面调整策略,这些策略对于调整电极特性特别有用,特别是对于增强细菌黏附反应。讨论了电极表面特性的调整,特别以微生物燃料电池为例。

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