Department of Biomedical Engineering, Michigan Technological University, Houghton, MI, 49931, USA.
Adv Mater. 2014 Jun 4;26(21):3415-9. doi: 10.1002/adma.201306137. Epub 2014 Mar 4.
A novel hydrogel actuator that combines ionoprinting techniques with reversible catechol-metal ion coordination chemistry found in mussel adhesive proteins is developed. Deposited metal ions increase the local crosslinking density, which induces sharp bending of the hydrogel. Reversibly bound metal ions can be removed and reintroduced in a different pattern so that the hydrogel can be reprogrammed to transform into a different 3-dimentional shape.
开发了一种新型水凝胶驱动器,它结合了离子刻印技术和贻贝粘合蛋白中存在的可逆儿茶酚-金属离子配位化学。沉积的金属离子增加了局部交联密度,从而导致水凝胶的急剧弯曲。可逆结合的金属离子可以被去除并以不同的图案重新引入,从而使水凝胶可以被重新编程以转变成不同的三维形状。