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Polymeric triple-shape materials

机译:聚合三层材料

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摘要

Shape-memory polymers represent a promising class of materials that can move from one shape to another in response to a stimulus such as heat. Thus far, these systems are dual-shape materials. Here, we report a triple-shape polymer able to change from a first shape (A) to a second shape (B) and from there to a third shape (C). Shapes B and C are recalled by subsequent temperature increases. Whereas shapes A and B are fixed by physical cross-links, shape C is defined by covalent cross-links established during network formation. The triple-shape effect is a general concept that requires the application of a two-step programming process to suitable polymers and can be realized for various polymer networks whose molecular structure allows formation of at least two separated domains providing pronounced physical cross-links. These domains can act as the switches, which are used in the two-step programming process for temporarily fixing shapes A and B. It is demonstrated that different combinations of shapes A and B for a polymer network in a given shape C can be obtained by adjusting specific parameters of the programming process. Dual-shape materials have already found various applications. However, as later discussed and illustrated by two examples, the ability to induce two shape changes that are not limited to be unidirectional rather than one could potentially offer unique opportunities, such as in medical devices or fasteners.
机译:形状记忆聚合物代表了一种有前途的材料,可以响应诸如热的刺激而从一种形状移动到另一种形状。到目前为止,这些系统是双重形状的材料。在此,我们报告了一种三重形状的聚合物,它能够从第一形状(A)变为第二形状(B),然后从第三形状(C)变为第三形状。形状B和C通过随后的温度升高而恢复。形状A和B通过物理交联固定,而形状C是通过在网络形成过程中建立的共价交联定义的。三重形状效应是需要对合适的聚合物应用两步编程过程的一般概念,并且可以针对其分子结构允许形成至少两个分离的结构域以提供明显的物理交联的各种聚合物网络来实现。这些域可以用作开关,在两步编程过程中用于临时固定形状A和B。已证明,通过给定形状C可以获得聚合物网络中形状A和B的不同组合,具体方法如下:调整编程过程的特定参数。双重形状的材料已经发现了各种应用。但是,如稍后通过两个示例讨论和说明的那样,诱导两种形状变化的能力可能不仅提供了独特的机会,例如在医疗设备或紧固件中,所述两种形状变化不限于单向,而不仅仅是一种。

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