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混合水凝胶的混沌直接墨水书写(ChDIW):对微有序多功能冷冻凝胶制备的启示

Chaotic Direct Ink Writing (ChDIW) of Hybrid Hydrogels: Implication for Fabrication of Micro-ordered Multifunctional Cryogels.

作者信息

Samsami Shakiba, Khoshhesab Zahra Monsef, Yee-de León Juan Felipe, Moreno Diego Alonso Quevedo, Alvarez Mario Moisés, Trujillo-de Santiago Grissel, Tam Kam C, Kamkar Milad

机构信息

Department of Chemical Engineering, Waterloo Institute for Nanotechnology, University of Waterloo, Waterloo, Ontario, N2L 3G1, Canada.

Departamento de Ingeniería Mecatrónica, Tecnologico de Monterrey, Monterrey, NL, 64849, Mexico.

出版信息

Small Methods. 2025 Aug;9(8):e2500349. doi: 10.1002/smtd.202500349. Epub 2025 Mar 13.

Abstract

The modern era demands multifunctional materials to support advanced technologies and tackle complex environmental issues caused by these innovations. Consequently, material hybridization has garnered significant attention as a strategy to design materials with prescribed multifunctional properties. Drawing inspiration from nature, a multi-scale material design approach is proposed to produce 3D-shaped hybrid materials by combining chaotic flows with direct ink writing (ChDIW). This approach enables the formation of predictable multilayered filaments with tunable microscale internal architectures using just a single printhead. By assigning different nanomaterials to each layer, 3D-printed hydrogels and cryogels with diverse functionalities, such as electrical conductivity and magnetism are successfully produced. Furthermore, control over the microscale pore morphology within each cryogel filament is achieved, resulting in a side-by-side dual-pore network sharing a large interfacial area. The ChDIW is compatible with different types of hydrogels as long as the rheological features of the printing materials are well-regulated. To showcase the potential of these multilayered cryogels, their electromagnetic interference shielding performance is evaluated, and they reveal an absorption-dominant mechanism with an excellent absorption coefficient of 0.71. This work opens new avenues in soft matter and cryogel engineering, demonstrating how simplicity can generate complexity.

摘要

现代社会需要多功能材料来支持先进技术,并解决这些创新所带来的复杂环境问题。因此,材料杂化作为一种设计具有特定多功能特性材料的策略,已引起了广泛关注。借鉴自然的灵感,我们提出了一种多尺度材料设计方法,通过将混沌流与直接墨水书写(ChDIW)相结合来制备三维形状的杂化材料。这种方法仅使用一个打印头就能形成具有可调节微观内部结构的可预测多层细丝。通过为每一层分配不同的纳米材料,成功制备出了具有多种功能(如导电性和磁性)的三维打印水凝胶和冷冻凝胶。此外,还实现了对每个冷冻凝胶细丝内微观孔隙形态的控制,从而形成了具有大界面面积的并排双孔网络。只要打印材料的流变特性得到良好调节,ChDIW就与不同类型的水凝胶兼容。为了展示这些多层冷冻凝胶的潜力,我们评估了它们的电磁干扰屏蔽性能,结果表明它们具有以吸收为主的机制,吸收系数高达0.71,表现优异。这项工作为软物质和冷冻凝胶工程开辟了新途径,展示了简单性如何产生复杂性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd56/12391654/a4d04a380ea8/SMTD-9-2500349-g003.jpg

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