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使用I(2)/尿素-H(2)O(2)试剂体系对有机分子进行无溶剂碘化反应。

Solvent-free iodination of organic molecules using the I(2)/urea-H(2)O(2) reagent system.

作者信息

Pavlinac Jasminka, Zupan Marko, Stavber Stojan

机构信息

Laboratory for Organic and Bioorganic Chemistry, 'Jozef Stefan Institute', Jamova 39, 1000 Ljubljana, Slovenia.

出版信息

Org Biomol Chem. 2007 Feb 21;5(4):699-707. doi: 10.1039/b614819k. Epub 2007 Jan 15.

DOI:10.1039/b614819k
PMID:17285178
Abstract

Introduction of iodine under solvent-free conditions into several aromatic compounds activated toward electrophilic functionalization was found to proceed efficiently using elemental iodine in the presence of a solid oxidizer, the urea-H(2)O(2) (UHP) adduct. Two types of iodo-functionalization through an electrophilic process were observed: iodination of an aromatic ring, and side-chain iodo-functionalization in the case of arylalkyl ketones. Two reaction routes were established based on the required substrate : iodine : oxidizer ratio for the most efficient iodo-transformation, and the role of UHP was elucidated in each route. The first, requiring a 1 : 0.5 : 0.6 stoichiometric ratio of substrate to iodine to UHP, followed the atom economy concept in regard to iodine and was valid in the case of aniline, 4-t-Bu-phenol, 1,2-dimethoxy benzene, 1,3-dimethoxy benzene, 1,2,3-trimethoxy benzene, 1,2,4-trimethoxy benzene, 1,3,5-trimethoxy benzene, 1-indanone and 1-tetralone. The second reaction route, where a 1 : 1 : 1 stoichiometric ratio of substrate : I(2) : UHP was needed for efficient iodination, was suitable for side-chain iodo-functionalization of acetophenone and methoxy-substituted acetophenones. Moreover, addition of iodine to 1-octene and some phenylacetylenic derivatives was found to proceed efficiently without the presence of any oxidizer and solvent at room temperature.

摘要

发现在无溶剂条件下,使用单质碘在固体氧化剂尿素 - 过氧化氢(UHP)加合物存在的情况下,可有效地将碘引入几种易于进行亲电官能化的芳香族化合物中。观察到通过亲电过程进行的两种碘官能化类型:芳香环的碘化,以及芳基烷基酮情况下的侧链碘官能化。根据最有效的碘转化所需的底物:碘:氧化剂比例建立了两条反应路线,并阐明了UHP在每条路线中的作用。第一条路线,底物、碘与UHP的化学计量比为1:0.5:0.6,在碘方面遵循原子经济性概念,适用于苯胺、4 - t - 丁基苯酚、1,2 - 二甲氧基苯、1,3 - 二甲氧基苯、1,2,3 - 三甲氧基苯、1,2,4 - 三甲氧基苯、1,3,5 - 三甲氧基苯、1 - 茚满酮和1 - 四氢萘酮。第二条反应路线,高效碘化需要底物:I₂:UHP的化学计量比为1:1:1,适用于苯乙酮和甲氧基取代苯乙酮的侧链碘官能化。此外,发现在室温下,在不存在任何氧化剂和溶剂的情况下,向1 - 辛烯和一些苯基乙炔衍生物中添加碘可有效进行反应。

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