Ding Yong, Panzarasa Guido, Stucki Sandro, Burgert Ingo, Keplinger Tobias
Wood Materials Science, Institute for Building Materials, ETH Zürich, Zürich 8093, Switzerland.
WoodTec Group, Cellulose & Wood Materials, Empa, Dübendorf 8600, Switzerland.
ACS Sustain Chem Eng. 2022 May 2;10(17):5517-5525. doi: 10.1021/acssuschemeng.2c00111. Epub 2022 Apr 20.
Smart membranes that can open and/or close their pores in a controlled manner by external stimuli possess potential in various applications, such as water flow manipulation, indoor climate regulation, and sensing. The design of smart gating membranes with high flux, immediate response, and mechanical robustness is still an open challenge, limiting their versatility and practical applicability. Inspired by the controlled opening and closure of plant stomata, we have developed a smart gating wood membrane, taking advantage of the unique wood scaffold with its hierarchical porous structure to carry thermoresponsive hydrogel gates. Laser drilling was applied to cut channels in the wood scaffold with well-aligned pores to incorporate the smart gating membranes. In situ polymerization of poly(N-isopropylacrylamide) above its lower critical solution temperature inside the channels resulted in a hydrogel with a heterogeneous microstructure acting as a thermoresponsive gate. The wood-based smart gating membranes exhibited reversible and stable pore opening/closing under heating/cooling stimuli. The achieved rapid response and feasibility of scale-up open the venue for various practical applications. In this work, we demonstrated their potential for indoor light regulation and as a water flow manipulator.
能够通过外部刺激以可控方式打开和/或关闭其孔隙的智能膜在各种应用中具有潜力,例如水流操纵、室内气候调节和传感。设计具有高通量、即时响应和机械稳健性的智能门控膜仍然是一个悬而未决的挑战,这限制了它们的多功能性和实际适用性。受植物气孔可控开闭的启发,我们开发了一种智能门控木膜,利用具有分级多孔结构的独特木材支架来承载热响应水凝胶门。采用激光钻孔在具有排列良好孔隙的木材支架上切割通道,以纳入智能门控膜。在通道内高于其低临界溶液温度的条件下原位聚合聚(N-异丙基丙烯酰胺),得到一种具有异质微观结构的水凝胶,作为热响应门。木质智能门控膜在加热/冷却刺激下表现出可逆且稳定的孔隙开合。所实现的快速响应和放大可行性为各种实际应用开辟了道路。在这项工作中,我们展示了它们在室内光线调节和水流操纵方面的潜力。