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The isotopic anatomies of molecules and minerals

机译:分子和矿物的同位素解剖

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Most natural compounds are composed of diverse isotopologues that differ in the number andor symmetrically unique atomic locations of isotopic substitutions. Little of this isotopic diversity is observed by conventional methods of stable isotope geochemistry, which generally measure concentrations of rare isotopes without constraining differences in isotopic composition between different atomic sites or nonrandom probabilities of multiple isotopic substitutions in the same molecule. Recent advances in analytical instrumentation and methodology have created a set of geochemical tools-geothermometers, biosynthetic signatures, forensic fingerprints-based on these position-specific isotope effects and multiply substituted isotopologues. This progress suggests we are entering a period in which many new geochemical tools of this type will be created. This review describes the principles, background, analytical methods, existing applied tools, and likely future progress of this emerging field.
机译:大多数天然化合物是由同位素同位素取代的数目和/或对称唯一原子位置不同的各种同位素组成的。通过稳定同位素地球化学的常规方法几乎观察不到这种同位素多样性,该方法通常可测量稀有同位素的浓度,而不会限制不同原子位点之间同位素组成的差异或同一分子中多个同位素取代的非随机概率。分析仪器和方法学的最新进展已创建了一套地球化学工具-地热仪,生物合成特征,法医指纹-基于这些特定位置的同位素效应和多重取代的同位素。这一进展表明我们正进入一个阶段,在此期间将创建许多此类新的地球化学工具。这篇综述描述了该新兴领域的原理,背景,分析方法,现有应用工具以及未来可能的进展。

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