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Commemorating Two Centuries of Iodine Research: An Interdisciplinary Overview of Current Research

机译:纪念两个世纪的碘研究:当前研究的跨学科概述

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摘要

Iodine was discovered as a novel element in 1811 during the Napoleonic Wars. To celebrate the bicentennial anniversary of this event we reflect on the history and highlight the many facets of iodine research that have evolved since its discovery. Iodine has an impact on many aspects of life on Earth as well as on human civilization. It is accumulated in high concentrations by marine algae, which are the origin of strong iodine fluxes into the coastal atmosphere which influence climatic processes, and dissolved iodine is considered a biophilic element in marine sediments. Iodine is central to thyroid function in vertebrates, with paramount implications for human health. Iodine can exist in a wide range of oxidation states and it features a diverse supramolecular chemistry. Iodine is amenable to several analytical techniques, and iodine compounds have found widespread use in organic synthesis. Elemental iodine is produced on an industrial scale and has found a wide range of applications in innovative materials, including semiconductors—in particular, in solar cells.
机译:碘在1811年拿破仑战争期间被发现为一种新颖元素。为了庆祝这一活动成立两百周年,我们回顾了历史,并重点介绍了自碘研究以来不断发展的许多方面。碘对地球以及人类文明的许多方面都有影响。它是由海藻以高浓度积累的,海藻是流入沿海大气的强碘通量的源头,会影响气候过程,溶解的碘被认为是海洋沉积物中的一种生物成分。碘对于脊椎动物的甲状腺功能至关重要,对人类健康至关重要。碘可以多种氧化态存在,并且具有多种超分子化学特征。碘适用于多种分析技术,碘化合物已广泛用于有机合成中。元素碘以工业规模生产,并已在包括半导体在内的创新材料中广泛应用,尤其是在太阳能电池中。

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