通过易斯对聚合物对共纳米序列的动力和热力学控制的复合相互作用
Liam T Reilly1, Michael L McGraw1, Francesca D Eckstrom1
1Department of Chemistry, Colorado State University, Fort Collins, Colorado 80523-1872, United States.
Journal of the American Chemical Society
|December 15, 2022
概括
通过易斯对聚合 (LPP) 的复合序列控制 (CSC) 通过平衡热力学和动力学参数精确地决定块共聚物 (BCP) 序列. 这种方法扩大了单体范围,并改善了对聚合物结构的控制.
科学领域:
- 聚合物化学
- 材料科学
- 有机合成
背景情况:
- 共同分子混合物的直接聚合提供了有效的区块共聚物 (BCP) 合成.
- 传统方法通常缺乏对共聚物序列和单体范围的控制.
- 通过易斯对聚合 (LPP) 的复合序列控制 (CSC) 提供了增强的控制.
研究的目的:
- 研究CSC-LPP中的热力学 (Keq) 和动力学 (kp) 参数之间的相互作用.
- 为了证明对极性乙烯基单体的共序列的精确控制.
- 为了实现先进的区块共聚物架构的合成.
主要方法:
- 对各种单体的易斯酸平衡 (Keq) 和聚合率 (kp) 参数进行实验量化.
- 动力和热力学数据的计算验证.
- 设计和执行共聚化以研究 Keq-kp 关系.
- 由此产生的共聚物微结构的分析.
主要成果:
- 建立了对不同单体的 Keq 和 kp 参数的定量理解.
- 证明了对comonomer序列的精确控制,抑制了像逐渐缩小和错误整合这样的错误.
- 与产生的共聚物微结构相关的Keq-kp关系.
- 合成了更高阶的块共聚物.
结论:
- CSC-LPP为精确的BCP序列控制提供了一个强大的平台.
- 该方法允许合理设计复杂的聚合物架构.
- 这种方法通过可控聚合来促进材料创新.
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