Kodura Daniel, Houck Hannes A, Bloesser Fabian R, Goldmann Anja S, Du Prez Filip E, Frisch Hendrik, Barner-Kowollik Christopher
School of Chemistry and Physics, Queensland University of Technology (QUT) 2 George Street Brisbane QLD 4000 Australia
Centre for Materials Science, Queensland University of Technology (QUT) 2 George Street Brisbane QLD 4000 Australia.
Chem Sci. 2020 Nov 17;12(4):1302-1310. doi: 10.1039/d0sc05818a.
While polymer synthesis proceeds predominantly towards the thermodynamic minimum, living systems operate on the reverse principle - consuming fuel to maintain a non-equilibrium state. Herein, we report the controlled formation of 3D macromolecular architectures based on light-fueled covalent non-equilibrium chemistry. In the presence of green light (525 nm) and a bivalent triazolinedione (TAD) crosslinker, naphthalene-containing polymers can be folded into single chain nanoparticles (SCNPs). At ambient temperature, the cycloaddition product of TAD with naphthalene reverts and the SCNP unfolds into its linear parent polymer. The reported SCNP is the first example of a reversible light triggered folding of single polymer chains and can readily be repeated for several cycles. The folded state of the SCNP can either be preserved through a constant supply of light fuel, kinetic trapping or through a chemical modification that makes the folded state thermodynamically favored. Whereas small molecule bivalent TAD/naphthalene cycloaddition products largely degraded after 3 days in solution, even in the presence of fuel, the SCNP entities were found to remain intact, thereby indicating the light-fueled stabilization of the SCNP to be an inherent feature of the confined macromolecular environment.
虽然聚合物合成主要朝着热力学最小值进行,但生命系统却遵循相反的原理——消耗燃料以维持非平衡状态。在此,我们报告了基于光驱动共价非平衡化学的三维大分子结构的可控形成。在绿光(525纳米)和二价三唑啉二酮(TAD)交联剂存在的情况下,含萘聚合物可折叠成单链纳米颗粒(SCNP)。在环境温度下,TAD与萘的环加成产物会逆转,SCNP会展开成其线性母体聚合物。所报道的SCNP是单聚合物链可逆光触发折叠的首个实例,并且可以轻松重复进行几个循环。SCNP的折叠状态既可以通过持续供应光燃料、动力学捕获来保持,也可以通过使折叠状态在热力学上更有利的化学修饰来保持。虽然小分子二价TAD/萘环加成产物在溶液中3天后大多会降解,即使存在燃料也是如此,但发现SCNP实体保持完整,从而表明SCNP的光驱动稳定化是受限大分子环境的固有特征。