School of Chemistry, The University of New South Wales, Sydney, NSW, 2052, Australia.
The Australian Centre for Nanomedicine and the ARC Centre of Excellence in Convergent Bio-Nano Science and Technology, The University of New South Wales, Sydney, NSW, 2052, Australia.
Angew Chem Int Ed Engl. 2021 Mar 15;60(12):6764-6770. doi: 10.1002/anie.202015703. Epub 2021 Feb 3.
Two photoswitchable arylazopyrozoles form hydrogels at a concentration of 1.2 % (w/v). With a molecular weight of 258.28 g mol , these are the lowest known molecular weight hydrogelators that respond reversibly to light. Photoswitching of the E- to the Z-form by exposure to 365 nm light results in a macroscopic gel→sol transition; nearly an order of magnitude reduction in the measured elastic and loss moduli. In the case of the meta-arylazopyrozole, cryogenic transmission electron microscopy suggests that the 29±7 nm wide sheets in the E-gel state narrow to 13±2 nm upon photoswitching to the predominantly Z-solution state. Photoswitching for meta-arylazopyrozole is reversible through cycles of 365 nm and 520 nm excitation with little fatigue. The release of a rhodamine B dye encapsulated in gels formed by the arylazopyrozoles is accelerated more than 20-fold upon photoswitching with 365 nm light, demonstrating these materials are suitable for light-controlled cargo release.
两种光致变色芳基偶氮吡咯在 1.2%(w/v)浓度下形成水凝胶。这些水凝胶的分子量为 258.28g/mol,是已知分子量最低的可对光进行可逆响应的水凝胶形成剂。用 365nm 光照射使 E 态到 Z 态的光致异构化导致宏观凝胶到溶胶的转变;测量得到的弹性和损耗模量几乎降低了一个数量级。在间位芳基偶氮吡咯的情况下,低温传输电子显微镜表明,在 E 态凝胶中,29±7nm 宽的薄片在光致异构化为主要 Z 态溶液时变窄至 13±2nm。间位芳基偶氮吡咯的光致异构化通过 365nm 和 520nm 激发的循环是可逆的,几乎没有疲劳。用 365nm 光照射后,包裹在芳基偶氮吡咯形成的凝胶中的罗丹明 B 染料的释放速度加快了 20 多倍,证明这些材料适合用于光控货物释放。