Morales Daniel, Podolsky Igor, Mailen Russell W, Shay Timothy, Dickey Michael D, Velev Orlin D
Department of Chemical and Biomolecular Engineering, North Carolina State University, Raleigh, NC 27695, USA.
Micromachines (Basel). 2016 May 26;7(6):98. doi: 10.3390/mi7060098.
We report multi-responsive and double-folding bilayer hydrogel sheet actuators, whose directional bending response is tuned by modulating the solvent quality and temperature and where locally crosslinked regions, induced by ionoprinting, enable the actuators to invert their bending axis. The sheets are made multi-responsive by combining two stimuli responsive gels that incur opposing and complementary swelling and shrinking responses to the same stimulus. The lower critical solution temperature (LCST) can be tuned to specific temperatures depending on the EtOH concentration, enabling the actuators to change direction isothermally. Higher EtOH concentrations cause upper critical solution temperature (UCST) behavior in the poly(-isopropylacrylamide) (pNIPAAm) gel networks, which can induce an amplifying effect during bilayer bending. External ionoprints reliably and repeatedly invert the gel bilayer bending axis between water and EtOH. Placing the ionoprint at the gel/gel interface can lead to opposite shape conformations, but with no clear trend in the bending behavior. We hypothesize that this is due to the ionoprint passing through the neutral axis of the bilayer during shrinking in hot water. Finally, we demonstrate the ability of the actuators to achieve shapes unique to the specific external conditions towards developing more responsive and adaptive soft actuator devices.
我们报道了一种多响应性双折叠双层水凝胶片致动器,其定向弯曲响应可通过调节溶剂质量和温度来调整,并且由离子印刷诱导的局部交联区域使致动器能够反转其弯曲轴。通过结合两种对相同刺激产生相反和互补的溶胀和收缩响应的刺激响应凝胶,使这些片材具有多响应性。根据乙醇浓度,较低临界溶液温度(LCST)可调节至特定温度,从而使致动器能够等温改变方向。较高的乙醇浓度会在聚(N-异丙基丙烯酰胺)(pNIPAAm)凝胶网络中导致较高临界溶液温度(UCST)行为,这在双层弯曲过程中可产生放大效应。外部离子印刷可在水和乙醇之间可靠且反复地反转凝胶双层的弯曲轴。将离子印刷置于凝胶/凝胶界面可能会导致相反的形状构象,但弯曲行为没有明显趋势。我们推测这是由于离子印刷在热水收缩过程中穿过双层的中性轴所致。最后,我们展示了致动器实现特定外部条件下独特形状的能力,以开发更具响应性和适应性的软致动器装置。