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The determination of structure and reactivity at the surfaces of materials used in biology: needs and requirements for electron and ion spectroscopy for surface analysis

机译:生物学材料表面结构和反应性的确定:表面分析电子和离子光谱的需求和要求

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摘要

We discuss here the status and challenges of the use of surface chemical analysis based on electron and ion spectrometry for "biomaterials", that class of materials and their applications where the primary surface contact of a polymer, metal, alloy, ceramic, or semiconductor, etc. is with a biological environment. Subsequent papers in this special issue highlight contrasting views on the relevance of surface science to this problem, the emergence of scanning probe microscopy and applications in areas of interest to surface scientists. The challenges of structure determination and the relationship with reactivity in these environments are outlined. Some examples are given describing areas for future growth of electron and ion spectroscopy. These are highlighted by problems in the analysis of reactive materials; where the purpose of the material is not to be "inert" to the biological milieu. Surface chemical problems of general import include (bio)-adhesion and (bio)-corrosion; thus, there are direct parallels with other areas of substantial previous work in surface science.
机译:我们将在此讨论对“生物材料”使用基于电子和离子光谱的表面化学分析的现状和挑战,这类材料及其在聚合物,金属,合金,陶瓷或半导体的主要表面接触的应用,等具有生物环境。在本期特刊的后续文章中,就表面科学与该问题的相关性,扫描探针显微镜的出现以及在表面科学家感兴趣的领域中的应用,提出了不同的观点。概述了在这些环境中结构确定的挑战以及与反应性的关系。给出了一些示例,描述了电子和离子光谱学未来的发展领域。反应性材料分析中的问题突出表明了这些问题;材料的目的不是对生物学环境“惰性”的。一般进口的表面化学问题包括(生物)粘合和(生物)腐蚀;因此,与表面科学领域先前大量工作的其他领域有着直接的相似之处。

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