首页> 美国卫生研究院文献>ACS Omega >Electroactive Polyhydroquinone Coatings for MarineFouling Prevention—A Rejected Dynamic pH Hypothesis and a DeceivingArtifact in Electrochemical Antifouling Testing
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Electroactive Polyhydroquinone Coatings for MarineFouling Prevention—A Rejected Dynamic pH Hypothesis and a DeceivingArtifact in Electrochemical Antifouling Testing

机译:船用电活性聚氢醌涂料防止结垢-拒绝动态pH假说和欺骗电化学防污测试中的伪像

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摘要

Nanometer-thin coatings of polyhydroquinone (PHQ), which release and absorb protons upon oxidation and reduction, respectively, were tested for electrochemically induced anti-biofouling activity under the hypothesis that a dynamic pH environment would discourage fouling. Antifouling tests in artificial seawater using the marine, biofilm-forming bacterium Vibrio alginolyticus proved the coatings to be ineffective in fouling prevention but revealed a deceiving artifact from the reactive species generated at the counter electrode (CE), even for electrochemical bias potentials as low as |400| mV versus Ag|AgCl. These findings provide valuable information on the preparation of nanothin PHQ coatings and their electrochemical behavior in artificial seawater. The results further demonstrate that it is critical to isolate the CE in electrochemical anti-biofouling testing.
机译:在动态pH环境会抑制结垢的假设下,测试了分别在氧化和还原后释放和吸收质子的聚对苯二酚(PHQ)纳米级薄涂层的电化学诱导的抗生物结垢活性。使用海洋生物膜形成细菌弧菌弧菌在人造海水中进行的防污测试证明,该涂层在防止污垢方面无效,但揭示了对电极(CE)上产生的反应性物种具有欺骗性的伪影,即使电化学偏置电位低至| 400 | mV对Ag | AgCl。这些发现提供了有关纳米薄PHQ涂层的制备及其在人工海水中的电化学行为的有价值的信息。结果进一步证明,在电化学抗生物污损测试中隔离CE是至关重要的。

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