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相关概念视频

ortho–para-Directing Activators: –CH3, –OH, –⁠NH2, –OCH301:11

ortho–para-Directing Activators: –CH3, –OH, –⁠NH2, –OCH3

6.1K
All ortho–para directors, excluding halogens, are activating groups. These groups donate electrons to the ring, making the ring carbons electron-rich. Consequently, the reactivity of the aromatic ring towards electrophilic substitution increases. For instance, the nitration of anisole is about 10,000 times faster than the nitration of benzene. The electron-donating effect of the methoxy group in anisole activates the ortho and para positions on the ring and stabilizes the corresponding...
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Halogenation of Alkenes02:46

Halogenation of Alkenes

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Halogenation is the addition of chlorine or bromine across the double bond in an alkene to yield a vicinal dihalide. The reaction occurs in the presence of inert and non-nucleophilic solvents, such as methylene chloride, chloroform, or carbon tetrachloride.
Consider the bromination of cyclopentene. Molecular bromine is polarized in the proximity of the π electrons of cyclopentene. An electrophilic bromine atom adds across the double bond, forming a cyclic bromonium ion intermediate.
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Nucleophilic Aromatic Substitution: Elimination–Addition01:11

Nucleophilic Aromatic Substitution: Elimination–Addition

4.0K
Simple aryl halides do not react with nucleophiles. However, nucleophilic aromatic substitutions can be forced under certain conditions, such as high temperatures or strong bases. The mechanism of substitution under such conditions involves the highly unstable and reactive benzyne intermediate. Benzyne contains equivalent carbon centers at both ends of the triple bond, each of which is equally susceptible to nucleophilic attack. This 50–50 distribution of products is...
4.0K
Electrophilic Aromatic Substitution: Chlorination and Bromination of Benzene01:15

Electrophilic Aromatic Substitution: Chlorination and Bromination of Benzene

8.2K
Chlorination and bromination are important classes of electrophilic aromatic substitutions, where benzene reacts with chlorine or bromine in the presence of a Lewis acid catalyst to give halogenated substitution products. A Lewis acid such as aluminium chloride or ferric chloride catalyzes the chlorination, and ferric bromide catalyzes the bromination reactions. During the bromination of alkenes, bromine polarizes and becomes electrophilic. However, in the bromination of benzene, the bromine...
8.2K
Regioselectivity and Stereochemistry of Hydroboration02:36

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8.2K
A significant aspect of hydroboration–oxidation is the regio- and stereochemical outcome of the reaction.
Hydroboration proceeds in a concerted fashion with the attack of borane on the π bond, giving a cyclic four-centered transition state. The –BH2 group is bonded to the less substituted carbon and –H to the more substituted carbon. The concerted nature requires the simultaneous addition of –H and –BH2 across the same face of the alkene giving syn...
8.2K
Hydroboration-Oxidation of Alkenes03:08

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8.3K
In addition to the oxymercuration–demercuration method, which converts the alkenes to alcohols with Markovnikov orientation, a complementary hydroboration-oxidation method yields the anti-Markovnikov product. The hydroboration reaction, discovered in 1959 by H.C. Brown, involves the addition of a B–H bond of borane to an alkene giving an organoborane intermediate. The oxidation of this intermediate with basic hydrogen peroxide forms an alcohol.
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解锁异芳香环系统,通过将素插入醇中.

Tobias Bischof1,2, Nele Wieprecht1,2, Sonja Fuchs1,2

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概括

研究人员探索了化醇衍生物如何与氧气,硫和发生反应. 替代9-o-carboranyl的9-borafluorene衍生物成功地形成了新的含甲基素的异质,包括一种新的1,2-乙.

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科学领域:

  • 有机金属化学 有机金属化学
  • 异环化学 异环化学
  • 材料科学 材料科学 材料科学

背景情况:

  • 醇衍生物是有机合成中的多功能构建块.
  • 素插入反应对于制造新型异环化合物至关重要.
  • 无效醇系统提供独特的电子和结构性质.

研究的目的:

  • 为了研究替代9-博拉烯和化硫衍生物对素插入的反应性.
  • 合成含有素的新型异构,包括衍生物.
  • 为了评估新合成的异环化合物的芳香度.

主要方法:

  • 合成各种废除的醇衍生物.
  • 素 (O,S,Se) 插入反应.
  • 产品的光谱表征.
  • 核独立化学转移 (NICS) 值的计算.

主要成果:

  • 用9-o-carboranyl替代的9-borafluorene选择性地产生了一组完整的O,S和Se异构.
  • 第一个1,2-利纳博林因衍生物已成功合成.
  • 合成的异环类类似物中的NICS值表示了芳香度.

结论:

  • 9-o-carboranyl替代剂是实现这些醇系统中完全素插入的关键.
  • 这项研究通过引入含的新型醇来扩大异环化学的范围.
  • 这些发现为这些独特的异环环的芳香特性提供了洞察力.