Gruzdenko Alexandra, Mulder Dirk J, Schenning Albert P H J, den Toonder Jaap M J, Debije Michael G
Stimuli-Responsive Functional Materials and Devices, Department of Chemical Engineering and Chemistry, Eindhoven University of Technology, P.O. Box 513, 5600 MB Eindhoven, The Netherlands.
Interactive Polymer Materials (IPM), Eindhoven University of Technology, Groene Loper 3, 5612 AE Eindhoven, The Netherlands.
ACS Appl Mater Interfaces. 2024 May 1;16(17):22696-22703. doi: 10.1021/acsami.4c01883. Epub 2024 Apr 22.
4D microstructured actuators are micro-objects made of stimuli-responsive materials capable of induced shape deformations, with applications ranging from microrobotics to smart micropatterned haptic surfaces. The novel technology dual-wavelength volumetric microlithography (DWVML) realizes rapid printing of high-resolution 3D microstructures and so has the potential to pave the way to feasible manufacturing of 4D microdevices. In this work, DWVML is applied for the first time to printing stimuli-responsive materials, namely, liquid crystal networks (LCNs). An LCN photoresist is developed and characterized, and large arrays of up to 5625 LCN micropillars with programmable shape changes are produced by means of DWVML in the time span of seconds, over areas as large as ∼5.4 mm. The production rate of 0.24 mm h is achieved, exceeding speeds previously reported for additive manufacturing of LCNs by 2 orders of magnitude. Finally, a membrane with tunable, micrometer-sized pores is fabricated to illustrate the potential DWVML holds for real-world applications.
4D微结构致动器是由能够引起形状变形的刺激响应材料制成的微物体,其应用范围从微型机器人到智能微图案触觉表面。新型技术双波长体微光刻(DWVML)实现了高分辨率3D微结构的快速打印,因此有潜力为4D微器件的可行制造铺平道路。在这项工作中,DWVML首次应用于打印刺激响应材料,即液晶网络(LCN)。开发并表征了一种LCN光刻胶,并通过DWVML在几秒钟的时间内,在面积高达约5.4平方毫米的区域内,制造出了多达5625个具有可编程形状变化的LCN微柱的大型阵列。实现了0.24平方毫米/小时的生产率,比先前报道的LCN增材制造速度快2个数量级。最后,制造了一种具有可调微米级孔隙的膜,以说明DWVML在实际应用中的潜力。