Iron-sponges Interrelations: from Biocorrosion to Nanostructured Biocomposites

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引用次数: 2

Abstract

Iron (Fe) is the 4th most widespread element on Earth that constitutes a crucial player in geochemistry, biological processes, and industry as metal. The study of iron biomineralization is a well-recognized interdisciplinary area that has been growing over the years. This paper presents an overview of iron-sponges interrelation, particularly from the view of nanostructured biocomposites. This review highlights the potential mechanism of iron-sponge interrelations, including biocorrosion as well as the possible role of selected amino acids and structural proteins in the mineralization process concerning the development of novel nanoorganized hybrid materials. This is the first review that describes the interrelations between iron and structural biopolymers of marine sponge skeletons to the best of our knowledge. We believe that this review will highlight new perspectives in bioinspired materials science and modern biomimetics.
铁海绵的相互关系:从生物腐蚀到纳米结构生物复合材料
铁(Fe)是地球上分布最广的第四大元素,作为金属在地球化学、生物过程和工业中起着至关重要的作用。铁生物矿化研究是一个公认的跨学科领域,多年来一直在发展。本文综述了铁海绵的相互关系,特别是从纳米结构生物复合材料的角度。本文综述了铁海绵相互作用的潜在机制,包括生物腐蚀,以及选定的氨基酸和结构蛋白在矿化过程中可能发挥的作用,这些都与新型纳米组织杂化材料的开发有关。这是我们所知的第一个描述铁与海绵骨架结构生物聚合物之间相互关系的综述。我们相信这篇综述将为仿生材料科学和现代仿生学开辟新的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.40
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