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庆祝硒化学研究的两个世纪:现状与新展望。

Celebrating Two Centuries of Research in Selenium Chemistry: State of the Art and New Prospective.

机构信息

Group of Catalysis and Organic Green Chemistry, Department of Pharmaceutical Sciences University of Perugia, Via del Liceo 1, 06134 Perugia, Italy.

出版信息

Molecules. 2017 Dec 2;22(12):2124. doi: 10.3390/molecules22122124.

Abstract

In 2017, the 200th anniversary of the discovery of selenium was celebrated. In 1817, the Swedish chemists, Berzelius and Gahn, on roasting 200 kg of sulfur from a pyrite from the Falun mine, obtained about 3 g of a precipitate that they first wrongly identified as tellurium. Berzelius doubted this result and repeated the analysis some months later realizing that a new element was in his hands and he named this element Selenium (Greek: Selene, moon) in consideration of its resemblance to Tellurium (Latin: Tellus, earth). Several events were organized in the year for this special celebration and this Special Issue would like to be an additional contribution to the success of a research that, especially during the last decades, rapidly grew in different fields: synthesis, medicinal chemistry, biology, material, and environment. These studies are strongly characterized by multi- and interdisciplinary connections, and, for this reason, we collected here contributions coming from different areas and disciplines, not exclusively synthetic organic chemistry.

摘要

2017 年,庆祝了硒发现 200 周年。1817 年,瑞典化学家贝采利乌斯和甘恩在焙烧来自法伦矿的 200 公斤黄铁矿时,得到了约 3 克沉淀物,他们最初错误地将其鉴定为碲。贝采利乌斯对此结果表示怀疑,并在几个月后重复了分析,意识到他手中有一种新元素,并根据其与碲(拉丁语:Tellus,地球)的相似性,将这种元素命名为硒(希腊语:Selene,月亮)。当年为这一特殊庆祝活动组织了多项活动,本特刊希望为这一研究的成功做出额外贡献,特别是在过去几十年中,该研究在不同领域(如合成、药物化学、生物学、材料和环境)迅速发展。这些研究的特点是具有多学科和跨学科的联系,因此,我们在这里收集了来自不同领域和学科的贡献,不仅限于合成有机化学。

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