Xiong Xinhong, Wang Hong, Xue Lulu, Cui Jiaxi
Yangtze Delta Region Institute (Huzhou), University of Electronic Science and Technology of China, Huzhou, 313001, P. R. China.
Institute of Fundamental and Frontier Sciences, University of Electronic Science and Technology of China, Chengdu, Sichuan 611731, China.
Angew Chem Int Ed Engl. 2023 Nov 20;62(47):e202306565. doi: 10.1002/anie.202306565. Epub 2023 Jul 27.
The growth of living systems is ubiquitous. Living organisms can continually update their sizes, shapes, and properties to meet various environmental challenges. Such a capability is also demonstrated by emerging self-growing materials that can incorporate externally provided compounds to grow as living organisms. In this Minireview, we summarize these materials in terms of six aspects. First, we discuss their essential characteristics, then describe the strategies for enabling crosslinked organic materials to self-grow from nutrient solutions containing polymerizable compounds. The developed examples are grouped into five categories based on their molecular mechanisms. We then explain the mechanism of mass transport within polymer networks during growth, which is critical for controlling the shape and morphology of the grown products. Afterwards, simulation models built to explain the interesting phenomena observed in self-growing materials are discussed. The development of self-growing materials is accompanied by various applications, including tuning bulk properties, creating textured surfaces, growth-induced self-healing, 4D printing, self-growing implants, actuation, self-growing structural coloration, and others. These examples are then summed up. Finally, we discuss the opportunities brought by self-growing materials and their facing challenges.
生命系统的生长无处不在。生物体能够不断更新其大小、形状和特性,以应对各种环境挑战。新兴的自生长材料也展示了这种能力,它们能够结合外部提供的化合物,像生物体一样生长。在这篇综述中,我们从六个方面对这些材料进行了总结。首先,我们讨论它们的基本特征,然后描述使交联有机材料从含有可聚合化合物的营养液中自生长的策略。根据其分子机制,已开发的实例分为五类。接着,我们解释生长过程中聚合物网络内的质量传输机制,这对于控制生长产物的形状和形态至关重要。之后,讨论了为解释自生长材料中观察到的有趣现象而建立的模拟模型。自生长材料的发展伴随着各种应用,包括调节整体性能、创建纹理表面、生长诱导自愈合、4D打印、自生长植入物、驱动、自生长结构着色等等。然后对这些实例进行了总结。最后,我们讨论了自生长材料带来的机遇及其面临的挑战。