Department of Chemistry, Pennsylvania State University, University Park, Pennsylvania 16802, United States.
J Am Chem Soc. 2015 Apr 29;137(16):5324-7. doi: 10.1021/jacs.5b02799. Epub 2015 Apr 21.
This Communication describes a strategy for incorporating detection units onto each repeating unit of self-immolative CDr polymers. This strategy enables macroscopic plastics to respond quickly to specific applied molecular signals that react with the plastic at the solid-liquid interface between the plastic and surrounding fluid. The response is a signal-induced depolymerization reaction that is continuous and complete from the site of the reacted detection unit to the end of the polymer. Thus, this strategy retains the ability of CDr polymers to provide amplified responses via depolymerization while simultaneously enhancing the rate of response of CDr-based macroscopic plastics to specific applied signals. Depolymerizable poly(benzyl ethers) were used to demonstrate the strategy and now are capable of depolymerizing in the context of rigid, solid-state polymeric materials.
本通讯描述了一种将检测单元结合到自耗竭 CDr 聚合物的每个重复单元上的策略。该策略使宏观塑料能够快速响应与塑料与周围流体之间的固-液界面处的塑料反应的特定应用分子信号。该响应是一种信号诱导的解聚反应,从反应的检测单元的位置到聚合物的末端连续且完全。因此,该策略保留了 CDr 聚合物通过解聚提供放大响应的能力,同时提高了基于 CDr 的宏观塑料对特定应用信号的响应速度。可解聚的聚(苄基醚)被用于证明该策略,现在能够在刚性固态聚合物材料的环境中解聚。