Saravanou Sofia Falia, Tsitsilianis Constantinos, Pasparakis George
Department of Chemical Engineering, University of Patras, 26500 Patras, Greece.
ACS Macro Lett. 2023 Dec 19;12(12):1614-1622. doi: 10.1021/acsmacrolett.3c00470. Epub 2023 Nov 13.
We report on a single chain polymer gelator comprising an alginate backbone double grafted with thermoresponsive P(NIPAM--NtBAM)-NH polymer grafts and 3-aminophenylboronic acid moieties. The resulting polymer forms robust polymer networks resulting from three cooperative cross-linking mechanisms: (i) the hydrophobic association of the T-responsive polymer grafts above 24 °C, (ii) the formation of boronate esters between the boronic acid and the diols of the alginate backbone at physiological pH, and (iii) the ionic interactions of the residual carboxylate moieties with Ca ions. The resulting material showed excellent tunability of the mechanical properties driven by stimuli combinations such as temperature, pH, or the addition of glucose as a network disruptor covering a storage modulus range from ∼260 Pa up to ∼1390 Pa by selective stimuli combinations. Also, the material was found to be nontoxic and could form arbitrary structures via 3D printing that can undergo multi-stimuli-responsive erosion profiles.
我们报道了一种单链聚合物凝胶剂,其包含藻酸盐主链,该主链双接枝有热响应性的P(NIPAM-NtBAM)-NH聚合物接枝和3-氨基苯硼酸部分。所得聚合物通过三种协同交联机制形成坚固的聚合物网络:(i) 温度响应性聚合物接枝在24°C以上的疏水缔合;(ii) 在生理pH下硼酸与藻酸盐主链的二醇之间形成硼酸酯;(iii) 残留羧酸盐部分与钙离子的离子相互作用。通过温度、pH或添加葡萄糖作为网络破坏剂等刺激组合,所得材料在刺激组合驱动下显示出优异的机械性能可调性,通过选择性刺激组合,储能模量范围从约260 Pa到约1390 Pa。此外,该材料被发现无毒,并且可以通过3D打印形成任意结构,这些结构可以经历多刺激响应侵蚀过程。