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Preparation and analysis of a new bioorganic metallic material

机译:一种新型生物有机金属材料的制备与分析

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摘要

Biofouling on metal surfaces is one of the main reasons for increased ship drag. Many methods have already been used to reduce or remove it with moderate success. In this study, a synthetic peptide has been utilized to react with 304 stainless steel aiming to generate a bioorganic stainless steel using a facile technique. After the reaction, white matter was found on the surface of the treated stainless steel via SEM, whilst the nontreated stainless steel had none. Elemental analysis confirmed that excessive N existed on the surface of the treated samples using an integrated SEM-EDS instrument, implying the presence of peptides binding on the surface of the bioorganic stainless steel. The FTIR spectra showed amide A and II peaks on the surface of the bioorganic stainless steel suggesting that either the peptides grafted onto the steel surface or the polypeptide composition accumulated on the steel samples. XPS analysis of the treated steel demonstrated that there was nitrogen bonding on the surface and it was a chemical bond via a previously unreported chemical interaction. The treated steel has a markedly increased contact angle (water contact angle of 65.7 +/- 4.7 degrees for nontreated steel in comparison to treated, 96.4 +/- 2.1 degrees), which supported the observation of the wettability change of the surface, i.e. the decrease of the surface energy value after peptide treatment. The changes of the surface parameters (such as, S-a, S-q, S-sk and S-ku) of the treated steel by surface analysis were observed.
机译:金属表面的生物污染是船舶阻力增加的主要原因之一。已经使用了许多方法来成功地减少或删除它。在这项研究中,合成肽已被用于与304不锈钢反应,目的是使用一种简便的技术来生成生物有机不锈钢。反应后,通过SEM在处理后的不锈钢的表面上发现了白质,而未处理的不锈钢则没有。元素分析证实,使用集成的SEM-EDS仪器在处理过的样品表面存在过多的N,这表明在生物有机不锈钢表面上存在结合肽的存在。 FTIR光谱显示了生物有机不锈钢表面的酰胺A和II峰,表明要么是嫁接到钢表面的肽,要么是钢样品上积累的多肽组成。经处理的钢的XPS分析表明,表面存在氮键,并且是以前未报告的化学相互作用的化学键。处理后的钢的接触角显着增加(与未处理的钢相比,水的接触角为65.7 +/- 4.7度,而处理后的水接触角为96.4 +/- 2.1度),这有助于观察表面的润湿性变化,即肽处理后表面能值降低。通过表面分析观察处理后的钢的表面参数(例如,S-a,S-q,S-sk和S-ku)的变化。

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