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相关概念视频

Lewis Acids and Bases02:16

Lewis Acids and Bases

13.9K
This lesson delves into Lewis acids and bases in the context of the octet rule for electron-deficient compounds. Here, the concept is discussed, emphasizing the group 13 elements like boron or aluminium. Since group 13 elements possess three valence electrons, they form trivalent compounds with a sextet of electrons and a vacant orbital for the central atom. Consequently, these electron-deficient compounds accept electrons from other species to complete their octet in a chemical reaction. They...
13.9K
Acid Halides to Ketones: Gilman Reagent01:14

Acid Halides to Ketones: Gilman Reagent

2.7K
Lithium dialkyl cuprate, also known as Gilman reagents, selectively reduces acid halides to ketones. The acid chloride is treated with Gilman reagent at −78 °C in the presence of ether solution to produce a ketone in good yield.
As shown below, the mechanism proceeds in two steps. First, one of the alkyl groups of the reagent acts as a nucleophile and attacks the acyl carbon of the acid chloride to form a tetrahedral intermediate. This is followed by the reformation of the carbon–oxygen...
2.7K
Electrophilic Aromatic Substitution: Fluorination and Iodination of Benzene01:13

Electrophilic Aromatic Substitution: Fluorination and Iodination of Benzene

5.9K
Bromination and chlorination of aromatic rings by electrophilic aromatic substitution reactions are easily achieved, but fluorination and iodination are difficult to achieve. Fluorine is so reactive that its reaction with benzene is difficult to control, resulting in poor yields of monofluoroaromatic products. To address this, Selectfluor reagent is used as a fluorine source in which a fluorine atom is bonded to a positively charged nitrogen.
5.9K
ortho–para-Directing Deactivators: Halogens01:24

ortho–para-Directing Deactivators: Halogens

5.5K
Halogens are ortho–para directors. They are more electronegative than carbon. Therefore, as ring substituents, they can withdraw electrons through the inductive effect and deactivate the aromatic ring towards electrophilic substitution. Halogens also have an electron-donating resonance effect on the ring, which influences the orientation of the incoming electrophile. If an electrophile attacks at the ortho or the para position, the halogen donates electrons and stabilizes the intermediate...
5.5K
Acid Halides to Alcohols: Grignard Reaction01:15

Acid Halides to Alcohols: Grignard Reaction

2.1K
Organomagnesium halides, commonly known as Grignard reagents, convert acid halides to tertiary alcohols. The reaction requires two equivalents of the Grignard reagent and proceeds via a ketone intermediate.
Grignard reagents are a source of carbanions and function as nucleophiles. The mechanism begins with the nucleophilic attack by the carbanion at the carbonyl carbon of the acid halide to form a tetrahedral intermediate. Next, the carbonyl group is re-formed, and the halide ion departs,...
2.1K
Acid Halides to Alcohols: LiAlH4 Reduction01:19

Acid Halides to Alcohols: LiAlH4 Reduction

2.7K
Acid halides are reduced to alcohols in the presence of a strong reducing agent like lithium aluminum hydride.
The mechanism proceeds in three steps. First, the nucleophilic hydride ion attacks the carbonyl carbon of the acid halide to form a tetrahedral intermediate. Next, the carbonyl group is re-formed, and the halide ion departs as a leaving group, generating an aldehyde. A second nucleophilic attack by the hydride yields an alkoxide ion, which, upon protonation, gives a primary alcohol as...
2.7K

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相关实验视频

Updated: Jun 12, 2025

Characterizing Lewis Pairs Using Titration Coupled with In Situ Infrared Spectroscopy
07:49

Characterizing Lewis Pairs Using Titration Coupled with In Situ Infrared Spectroscopy

Published on: February 20, 2020

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由基易斯酸诱导的化化.

Katharina Tölke1, Beate Neumann1, Hans-Georg Stammler1

  • 1Universität Bielefeld, Fakultät für Chemie, Centrum für Molekulare Materialien, Universitätsstraße 25, 33615, Bielefeld, Germany.

Chemistry (Weinheim an der Bergstrasse, Germany)
|September 19, 2024
PubMed
概括

研究人员通过选择性地用代替原子,合成了一种新的化合物[Ga(CCl2CF3) 3(FSiMe3]. 这种化合物显示出作为化化反应的催化剂的潜力.

科学领域:

  • 有机金属化学 有机金属化学
  • 的化学结构
  • 催化剂是一种催化剂.

背景情况:

  • 有机化合物是合成化学中的多功能试剂.
  • 化有机化合物带来了独特的合成挑战和机会.
  • 选择性素交换反应对于功能组转换至关重要.

研究的目的:

  • 为了合成和表征一种含有的新型化合物与化基联体.
  • 为了研究这种新化合物的反应性,特别是它对素交换的潜力.
  • 探索合成化合物在化化反应中的催化应用.

主要方法:

  • [Ga ((C2F5) 3 ((FSiMe3)) ]与三甲基的反应.
  • 结果的甲酸盐离子的隔离和结构特征化作为四酸盐.
  • 测试各种化基质在化过程中的催化活性.

主要成果:

  • 通过原子选择性取代α-原子,形成[Ga(CCl2CF3) 3 ((FSiMe3) ].
  • 甲酸离子[Ga(CCl2CF3) 3Cl]-成功地被分离并进行结构特征.
  • [Ga ((CCl2CF3) 3 ((FSiMe3)) ]在Me3SiCF3,2,2-二二和[PPh4][Ga ((C2F5) 4]的化过程中表现出催化活性.
关键词:
含有的化物.在C-F激活过程中.(Gallium) 是一种高的物质.易斯的超级酸是超级酸.主群元件的主要组件.

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结论:

  • 合成了一种新型的有机化合物与选择性化化联体.
  • 结构特征证实了成功的素交换.
  • 该化合物对化具有有前途的催化活性,为新的合成方法开辟了道路.