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首页> 外文期刊>ACS Macro Letters >100th Anniversary of Macromolecular Science Viewpoint: Photochemical Reaction Orthogonality in Modern Macromolecular Science
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100th Anniversary of Macromolecular Science Viewpoint: Photochemical Reaction Orthogonality in Modern Macromolecular Science

机译:大分子科学观点100周年:现代大分子科学的光化学反应正交

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The ability to perform multiple chemical reactions independently (orthogonally) in a single reaction vessel can allow simplified reaction protocols for intricate chemical syntheses. Light is an especially advantageous external stimuli to enact such orthogonal chemical reactions due to its independence with other stimuli, instantaneous spatiotemporal control, and material penetrability. The potential to combine orthogonal chemistry and polymerization is also very appealing, as these systems may open the door for polymeric materials to find applications in emerging and high-tech fields, including biotechnology, microelectronics, sensors, energy, and others. We highlight the use of light in orthogonal polymerization protocols, particularly for living and controlled polymerization, and explore potential future directions and challenges for this technology.
机译:在单个反应容器中独立(正交)在单一反应容器中进行多种化学反应的能力可以允许简化的反应方案用于复杂化学合成。 光是一种特别有利的外部刺激,以制定这种正交的化学反应,因为它具有与其他刺激,瞬时的时空控制和材料渗透性的独立性。 结合正交化学和聚合的可能性也非常吸引人,因为这些系统可以打开聚合物材料的门,以在新兴和高科技领域寻找应用,包括生物技术,微电子,传感器,能量等。 我们突出了正交聚合方案中光的使用,特别是对于生活和控制的聚合,并探索该技术的潜在未来方向和挑战。

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