Gao Meng, Meng Yuan, Shen Claire, Pei Qibing
Soft Materials Research Laboratory, Department of Materials Science and Engineering, Henry Samueli School of Engineering and Applied Science, University of California, Los Angeles, CA, 90095, USA.
College of Light Industry Science and Engineering, Tianjin University of Science and Technology, Tianjin, 300457, China.
Adv Mater. 2022 May;34(21):e2109798. doi: 10.1002/adma.202109798. Epub 2022 Mar 25.
Stiffness variable materials have been applied in a variety of engineering fields that require adaptation, automatic modulation, and morphing because of their unique property to switch between a rigid, load-bearing state and a soft, compliant state. Stiffness variable polymers comprising phase-changing side-chains (s-SVPs) have densely grafted, highly crystallizable long alkyl side-chains in a crosslinked network. Such a bottlebrush network-like structure gives rise to rigidity modulation as a result of the reversible crystallization and melting of the side chains. The corresponding modulus changes can be more than 1000-fold within a narrow temperature span, from ≈10 MPa to ≈10 kPa or lower. Other important properties of the s-SVP, such as stretchability, optical transmittance, and adhesion, can also be altered. This work reviews the underlying molecular mechanisms in the s-SVP's, discusses the material's structure-property relationship, and summarizes important applications explored so far, including reversible shape transformation, bistable electromechanical transduction, optical modulation, and reversible adhesion.
刚度可变材料因其在刚性、承载状态和柔软、柔顺状态之间切换的独特性能,已被应用于各种需要自适应、自动调制和变形的工程领域。包含相变侧链的刚度可变聚合物(s-SVP)在交联网络中具有密集接枝、高度可结晶的长烷基侧链。这种类似瓶刷网络的结构由于侧链的可逆结晶和熔融而产生刚度调制。在狭窄的温度范围内,相应的模量变化可以超过1000倍,从约10 MPa到约10 kPa或更低。s-SVP的其他重要性能,如拉伸性、透光率和粘附性,也可以改变。本文综述了s-SVP的潜在分子机制,讨论了材料的结构-性能关系,并总结了迄今为止探索的重要应用,包括可逆形状转变、双稳态机电转换、光调制和可逆粘附。