分子結合のための共性Au-N結合のイミニル基媒介型形成
Mingliang Zhang1,2, Junfeng Lin1,2, Kai Song1
1Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
Journal of the American Chemical Society
|March 7, 2023
まとめ
研究者らはスキャニング・トンネル顕微鏡 (STM-BJ) を用いて,金面と相互作用するイミニルラジカルを研究した. これは,高伝導性単分子結合を,共電性Au-N結合で作成するための新しい方法を示した.
科学分野:
- 表面科学
- 分子電子
- 有機化学
背景:
- 化学反応や装置において 有機基と移行金属は不可欠です
- 高い反応性のために,激素の相互作用を特徴づけるのは難しい.
- 単一分子の研究は 化学結合の正確な洞察を提供します
研究 の 目的:
- イミニルラジカルとゴールド表面の相互作用を単一分子レベルで調査する.
- イミニルラジカルとゴールドの間の 共同結合の形成を調査する
- 堅固な単分子結合を作る方法を開発する.
主な方法:
- スキャニング・トンネル顕微鏡 (STM-BJ) 断裂交差点の技術を用いる.
- オキシムエステルの光化学的N-O結合同解によってイミニル基を生成する.
- 単一分子結合の電子性質を分析する
主要な成果:
- イミニル基と黄金の表面の 相互作用を検出した
- 金-窒素 (Au-N) 結合の形成を確認した.
- Au-N結合が頑丈で高伝導性の単分子結合を形成することを実証した.
結論:
- この研究は,イミニル基の反応メカニズムに関する洞察を提供します.
- 結合電極と分子との接触を作るための簡単な光分解法が開発された.
- この研究は 新しい分子電子装置の道を開きます
関連する概念動画
Radical Formation: Overview
2.1K
A bond can be broken either by heterolytic bond cleavage to form ions or homolytic bond cleavage to yield radicals. A fishhook arrow is used to represent the motion of a single electron in homolytic bond cleavage. There are two main sources from which radicals can be formed:
Radicals from spin-paired molecules:
Radicals can be obtained from spin-paired molecules either by homolysis or electron transfer. While two radicals are formed in the former, an electron is added in the...
Radicals from spin-paired molecules:
Radicals can be obtained from spin-paired molecules either by homolysis or electron transfer. While two radicals are formed in the former, an electron is added in the...
2.1K
Radical Formation: Addition
1.7K
Radicals can be formed by adding a radical to a spin-paired molecule. This is typically observed with unsaturated species, where the addition of a radical across the π bond leads to the production of a new radical by dissolving the π bond. For example, the addition of a Br radical to an alkene yields a carbon-centered radical.
Similar to charge conservation in chemical reactions, spin conservation is implicit for radical reactions. Accordingly, the product formed must possess an...
Similar to charge conservation in chemical reactions, spin conservation is implicit for radical reactions. Accordingly, the product formed must possess an...
1.7K
Radical Reactivity: Overview
2.1K
Radicals, the highly reactive species, gain stability by undergoing three different reactions. The first reaction involves a radical-radical coupling, in which a radical combines with another radical, forming a spin‐paired molecule. The second reaction is between a radical and a spin‐paired molecule, generating a new radical and a new spin‐paired molecule. The third reaction is radical decomposition in a unimolecular reaction, forming a new radical and a spin‐paired...
2.1K
Radical Formation: Homolysis
3.6K
A bond is formed between two atoms by sharing two electrons. When this bond is broken by supplying sufficient energy, either two electrons can be taken up by one atom forming ions by the cleavage called heterolysis, or the two electrons are shared by two atoms, with one each creating radicals by the cleavage called homolysis.
3.6K
Radical Reactivity: Intramolecular vs Intermolecular
1.8K
Radical reactions can occur either intermolecularly or intramolecularly. In an intermolecular radical reaction, a nucleophilic radical adds to an electrophilic alkene or vice versa. In such reactions, the radical and generally the alkene, which is also called the radical trap, are two different molecules. Additionally, for such intermolecular reactions to occur, the radical trap must be active, present in an excess concentration, and the radical starting material must have a weak...
1.8K
Radical Anti-Markovnikov Addition to Alkenes: Mechanism
3.9K
The reaction of hydrogen bromide with alkenes in the presence of hydroperoxides or peroxides proceeds via anti-Markovnikov addition. The radical chain reaction comprises initiation, propagation, and termination steps.
The mechanism starts with chain initiation, which involves two steps. In the first chain initiation step, a weak peroxide bond is homolytically cleaved upon mild heating to form two alkoxy radicals. In the second initiation step, a hydrogen atom is abstracted by the alkoxy...
The mechanism starts with chain initiation, which involves two steps. In the first chain initiation step, a weak peroxide bond is homolytically cleaved upon mild heating to form two alkoxy radicals. In the second initiation step, a hydrogen atom is abstracted by the alkoxy...
3.9K


