Vidavsky Yuval, Yang Steven J, Abel Brooks A, Agami Iris, Diesendruck Charles E, Coates Geoffrey W, Silberstein Meredith N
Schulich Faculty of Chemistry , Technion - Israel Institute of Technology , Haifa 3200003 , Israel.
J Am Chem Soc. 2019 Jun 26;141(25):10060-10067. doi: 10.1021/jacs.9b04229. Epub 2019 Jun 18.
Mechanochromic functionality realized through force-responsive molecules (i.e., mechanophores) has great potential for spatially localized damage warning in polymers. However, in structural plastics, for which damage warning is most critical, this approach has had minimal success because brittle failure typically precedes detectable color change. Herein, we report on the room-temperature mechanochromic activation of spiropyran in high T bisphenol A polycarbonate. The mechanochromic functionality was introduced by polymerization of dihydroxyspiropyran as a comonomer while retaining the excellent thermomechanical properties of the polycarbonate. The mechanochromic behavior is thoroughly evaluated in response to changes in stress, deformation, and time, providing new insights regarding how loading history controls stress accumulation in polymer chains. In addition, a new method to incorporate mechanochromic functionality in structures without dispersing costly mechanophores in the bulk is demonstrated by using a mechanochromic laminate. The room-temperature mechanochromic activation in a structural polymer combined with the new and efficient preparation and processing methods bring us closer to the application of mechanochromic smart materials.
通过力响应分子(即机械发色团)实现的机械变色功能在聚合物的空间局部损伤预警方面具有巨大潜力。然而,在损伤预警最为关键的结构塑料中,这种方法收效甚微,因为脆性破坏通常先于可检测到的颜色变化发生。在此,我们报道了在高T双酚A聚碳酸酯中螺吡喃在室温下的机械变色活化。通过将二羟基螺吡喃作为共聚单体进行聚合引入机械变色功能,同时保留聚碳酸酯优异的热机械性能。针对应力、变形和时间的变化对机械变色行为进行了全面评估,为加载历史如何控制聚合物链中的应力积累提供了新的见解。此外,通过使用机械变色层压板,展示了一种在结构中引入机械变色功能而无需在本体中分散昂贵的机械发色团的新方法。结构聚合物中的室温机械变色活化与新的高效制备和加工方法相结合,使我们更接近机械变色智能材料的应用。