Modern Analytical Chemistry Methods for Chalcogen Materials Analysis and Characterization

S. Wonorahardjo, Fariati Fariati, Wayan Dasna
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引用次数: 1

Abstract

Analytical methods are needed to elucidate modern and complex compounds as well as to describe their physical properties. The underlying principles of chalcogen chemistry as well as the natural abundance of chalcogen elements are the base of building many biolog- ical substances, including sophisticated materials for future applications. Thus, the need for modern and state-of-the art analytical methods and techniques to characterize them, is obvious. In this chapter, challenges in analytical methods for chalcogen compounds and materials, as well as some examples of natural or synthesized materials or their combina- tions, including biomaterials, are discussed. Modern methods for chalcogen compounds analysis and structural determination discussed include: UV-Visible and infrared spec- troscopy (UV-Vis and IR), thermo analysis, electrochemistry, magnetic analysis, chromatography, X-ray methods (mostly XRF, XRD, and EDX), high-resolution microscopy (SEM and TEM), multinuclear NMR, computational analysis, and bioassay. Also, the historical background and nature of chalcogen elements, including reactivity and magnetic proper- ties as well as thermal behavior, common compounds of chalcogen elements: will be briefly discussed.
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现代分析化学方法对含硫材料的分析和表征
需要分析方法来阐明现代和复杂的化合物以及描述它们的物理性质。硫化学的基本原理以及天然丰富的硫元素是构建许多生物物质的基础,包括未来应用的复杂材料。因此,显然需要现代和最先进的分析方法和技术来表征它们。在本章中,讨论了含硫化合物和材料的分析方法所面临的挑战,以及一些天然或合成材料或其组合的例子,包括生物材料。讨论了用于分析含硫化合物和结构测定的现代方法,包括:紫外可见和红外光谱分析(UV-Vis和IR)、热分析、电化学、磁分析、色谱、x射线方法(主要是XRF、XRD和EDX)、高分辨率显微镜(SEM和TEM)、多核核磁共振、计算分析和生物测定。此外,本文还简要介绍了硫元素的历史背景和性质,包括反应性、磁性、热性质、常见的硫元素化合物。
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