收回:取消点击点击:机械促进的1,3-双极周期逆转
Johnathan N Brantley1, Kelly M Wiggins, Christopher W Bielawski
1Department of Chemistry and Biochemistry, The University of Texas at Austin, 1 University Station A1590, Austin, TX 78712, USA.
概括
研究人员发现,超声波可以分解聚合物内的惰性1,2,3-triazole化学键. 这种机械可变性为响应性材料和化学保护组开辟了新的可能性.
科学领域:
- 聚合物化学 聚合物化学
- 机械化学 机械化学
- 有机合成 有机合成
背景情况:
- 1,2,3-二醇部分通常是惰性的,并通过"点击"化学合成.
- 机械力可以用来指导化学反应.
- 对共价键的局部,异性向准是一个新兴的领域.
研究的目的:
- 在聚合物链中研究1,2,3-triazole的机械可变性.
- 探索嵌入式三醇组的超声波诱导反应.
- 评估三醇作为机械响应元素的潜力.
主要方法:
- 将1,2,3-triazole嵌入到一个聚甲酸链中.
- 应用超声波来诱导化学反应.
- 使用全面的光谱和化学分析进行确认.
主要成果:
- 超声波成功诱导了1,2,3-triazole部分的循环逆转.
- 惰性三醇组表现出对机械力的敏感性.
- 光谱和化学分析证实了观察到的反应性.
结论:
- 1,2,3-triazoles可以在合并到聚合物链中时变得机械不稳定.
- 超声波诱导的循环逆转为受控键裂解提供了一条途径.
- 这一发现表明,三醇可以作为机械不稳定性保护组或应力材料的应用.
相关概念视频
Thermal and Photochemical Electrocyclic Reactions: Overview
Electrocyclic reactions are reversible reactions. They involve an intramolecular cyclization or ring-opening of a conjugated polyene. Shown below are two examples of electrocyclic reactions. In the first reaction, the formation of the cyclic product is favored. In contrast, in the second reaction, ring-opening is favored due to the high ring strain associated with cyclobutene formation.
Woodward–Hoffmann Selection Rules and Microscopic Reversibility
Electrocyclic reactions, cycloadditions, and sigmatropic rearrangements are concerted pericyclic reactions that proceed via a cyclic transition state. These reactions are stereospecific and regioselective. The stereochemistry of the products depends on the symmetry characteristics of the interacting orbitals and the reaction conditions. Accordingly, pericyclic reactions are classified as either symmetry-allowed or symmetry-forbidden. Woodward and Hoffmann presented the selection criteria for...
Cycloaddition Reactions: MO Requirements for Thermal Activation
Thermal cycloadditions are reactions where the source of activation energy needed to initiate the reaction is provided in the form of heat. A typical example of a thermally-allowed cycloaddition is the Diels–Alder reaction, which is a [4 + 2] cycloaddition. In contrast, a [2 + 2] cycloaddition is thermally forbidden.
Cycloaddition Reactions: Overview
Cycloadditions are one of the most valuable and effective synthesis routes to form cyclic compounds. These are concerted pericyclic reactions between two unsaturated compounds resulting in a cyclic product with two new σ bonds formed at the expense of π bonds. The [4 + 2] cycloaddition, known as the Diels–Alder reaction, is the most common. The other example is a [2 + 2] cycloaddition.
Thermal Electrocyclic Reactions: Stereochemistry
The stereochemistry of electrocyclic reactions is strongly influenced by the orbital symmetry of the polyene HOMO. Under thermal conditions, the reaction proceeds via the ground-state HOMO.
Selection Rules: Thermal Activation
Conjugated systems containing an even number of π-electron pairs undergo a conrotatory ring closure. For example, thermal electrocyclization of (2E,4E)-2,4-hexadiene, a conjugated diene containing two π-electron pairs, gives trans-3,4-dimethylcyclobutene.
Selection Rules: Thermal Activation
Conjugated systems containing an even number of π-electron pairs undergo a conrotatory ring closure. For example, thermal electrocyclization of (2E,4E)-2,4-hexadiene, a conjugated diene containing two π-electron pairs, gives trans-3,4-dimethylcyclobutene.
Pericyclic Reactions: Introduction
Pericyclic reactions are organic reactions that occur via a concerted mechanism without generating any intermediates. The reactions proceed through the movement of electrons in a closed loop to form a cyclic transition state, where rearrangement of the σ and π bonds yields specific products.
Pericyclic reactions can be classified into three categories: electrocyclic reactions, cycloaddition reactions, and sigmatropic rearrangements. Electrocyclic reactions and sigmatropic rearrangements are...
Pericyclic reactions can be classified into three categories: electrocyclic reactions, cycloaddition reactions, and sigmatropic rearrangements. Electrocyclic reactions and sigmatropic rearrangements are...

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