Del Pozo Marc, Sol Jeroen A H P, Schenning Albert P H J, Debije Michael G
Laboratory for Stimuli-Responsive Functional Materials & Devices (SFD), Department of Chemical Engineering and Chemistry, Eindhoven University of Technology (TU/e), Groene Loper 3, Eindhoven, 5612 AE, The Netherlands.
Institute for Complex Molecular Systems (ICMS), Eindhoven University of Technology, Groene Loper 3, Eindhoven, 5612 AE, The Netherlands.
Adv Mater. 2022 Jan;34(3):e2104390. doi: 10.1002/adma.202104390. Epub 2021 Oct 29.
Recent years have seen major advances in the developments of both additive manufacturing concepts and responsive materials. When combined as 4D printing, the process can lead to functional materials and devices for use in health, energy generation, sensing, and soft robots. Among responsive materials, liquid crystals, which can deliver programmed, reversible, rapid responses in both air and underwater, are a prime contender for additive manufacturing, given their ease of use and adaptability to many different applications. In this paper, selected works are compared and analyzed to come to a didactical overview of the liquid crystal-additive manufacturing junction. Reading from front to back gives the reader a comprehensive understanding of the options and challenges in the field, while researchers already experienced in either liquid crystals or additive manufacturing are encouraged to scan through the text to see how they can incorporate additive manufacturing or liquid crystals into their own work. The educational text is closed with proposals for future research in this crossover field.
近年来,增材制造概念和响应材料的发展都取得了重大进展。当两者结合形成4D打印时,该工艺可以产生用于健康、能源生成、传感和软机器人的功能材料和设备。在响应材料中,液晶能够在空气和水下实现编程、可逆、快速响应,鉴于其易用性和对许多不同应用的适应性,是增材制造的主要竞争者。在本文中,对所选作品进行了比较和分析,以得出液晶-增材制造结合的教学概述。从前向后阅读能让读者全面了解该领域的选择和挑战,同时鼓励已经在液晶或增材制造方面有经验的研究人员浏览文本,看看他们如何将增材制造或液晶纳入自己的工作中。这篇教育性文本最后提出了该交叉领域未来研究的建议。