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Triple Shape Memory Materials Incorporating Two Distinct Polymer Networks Formed by Selective Thiol-Michael Addition Reactions

机译:包含两个通过选择性的Thiol-Michael加成反应形成的不同聚合物网络的三重形状记忆材料

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We present a composite material composed of dual polymer networks uniquely formed from a single reaction type and catalyst but involving monomers with dramatically different reactivities. This powerful new approach to creating polymer networks produces two narrow glass transition, homogeneous networks sequentially from a single reaction but with all monomers present and uniformly mixed prior to any polymerization. These materials exhibit a triple shape memory effect based on the dual polymer networks, which were both formed using the thiol-Michael addition reaction. Two multifunctional thiol monomers (i.e., mercaptoacetate(MA) and mercaptopropionate (MP)) and two multifunctional vinyls (i.e., vinyl sulfone (V) and acrylate (A)) were polymerized in situ using a nucleophilic initiator. The MA-V polymer network (T_g = 55 ℃) was generated first associated with the higher functional group reactivities followed by the formation of the MP-A network (T_g = 10 ℃) which was confirmed by FT-IR, SEM, DMA, and a separately prepared composite polymer consisting of MA-V particles embedded in an MP-A matrix. The triple shape memory effect was characterized using DMA, and it was demonstrated that the shapes could be programmed either by a one-step(single temperature) or a two-step method (two different temperatures). This material was able to hold its transitional shape for an extended time period (>1 h) at intermediate temperature (20 ℃) between its two T_gs, mainly due to narrow transitions of two separate networks. This new approach to obtain dual polymer networks with distinct transitions and characteristics is simple and robust, thus enabling applications in areas such as triple shape memory polymers, biomedical materials, and composites.
机译:我们提出了一种由双重聚合物网络组成的复合材料,该聚合物网络是由单一反应类型和催化剂唯一形成的,但涉及到具有明显不同反应性的单体。这种强大的生成聚合物网络的新方法可从单个反应中依次产生两个狭窄的玻璃化转变,均质网络,但所有单体均存在并在任何聚合反应之前均匀混合。这些材料显示出基于双重聚合物网络的三重形状记忆效应,所述双重聚合物网络均使用硫醇-迈克尔加成反应形成。使用亲核引发剂将两种多官能硫醇单体(即巯基乙酸酯(MA)和巯基丙酸酯(MP))和两种多官能乙烯基(即乙烯基砜(V)和丙烯酸酯(A))原位聚合。首先产生具有较高官能团反应性的MA-V聚合物网络(T_g = 55℃),然后形成MP-A网络(T_g = 10℃),并通过FT-IR,SEM,DMA证实了这一点。以及由嵌入MP-A基体中的MA-V颗粒组成的单独制备的复合聚合物。使用DMA表征了三重形状记忆效应,并证明了可以通过一个步骤(单一温度)或两个步骤(两个不同的温度)对形状进行编程。该材料能够在其两个T_g之间的中间温度(20℃)下保持较长时间(> 1 h)的过渡形状,这主要是由于两个独立网络的狭窄过渡所致。这种获得具有不同转变和特性的双重聚合物网络的新方法既简单又健壮,因此可以在三重形状记忆聚合物,生物医学材料和复合材料等领域进行应用。

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