Liu Yuxi, Tabor Rico F, Pawliszak Piotr, Beattie David A, Krasowska Marta, Muir Benjamin W, Thang San H, Ritchie Chris
School of Chemistry, Monash University Clayton VIC 3800 Australia
ARC Centre of Excellence for Enabling Eco-Efficient Beneficiation of Minerals Australia.
Chem Sci. 2025 Mar 12;16(19):8247-8261. doi: 10.1039/d5sc00977d. eCollection 2025 May 14.
As part of a complex equilibria network with other chemical species, flavyliums, the chromophoric component of anthocyanins, hold great potential for use in functional polymers. This study presents the successful syntheses of polymers containing two distinct flavylium-structures, generated post-modification of a parent polymer synthesised using reversible addition-fragmentation chain transfer (RAFT) polymerisation. The selective modification of acetophenone moieties enabled precise tuning of the polymers' properties, which are strongly influenced by the markedly different chemical characteristics of flavyliums and the other species in equilibria with them. The synthesised flavylium-containing polymers exhibit multi-stimuli responsiveness to variations in solvent, pH, light, and temperature, thereby introducing intricacy and viable functionality to the polymer system. The surface activity and critical aggregation concentrations (CAC) of the synthesised polymers were studied using profile analysis tensiometry (PAT), revealing distinct aggregation and self-assembly behaviours. Fractal-like aggregates formed by the flavylium-containing polymers were investigated using cryogenic electron microscopy (Cryo-EM) and small-angle X-ray scattering (SAXS). This research bridges the colourful dynamic equilibria of flavylium chemistry with polymer chemistry, paving the pathway for further investigations into flavylium-polymer interactions and the development of tuneable material properties of responsive polymers.
作为与其他化学物种构成的复杂平衡网络的一部分,花青定(花青素的发色成分)在功能聚合物中的应用潜力巨大。本研究成功合成了含有两种不同花青定结构的聚合物,该聚合物是通过对采用可逆加成-断裂链转移(RAFT)聚合合成的母体聚合物进行后修饰生成的。苯乙酮基团的选择性修饰能够精确调控聚合物的性能,而花青定及其平衡态中的其他物种显著不同的化学特性对这些性能有强烈影响。合成的含花青定聚合物对溶剂、pH值、光和温度的变化表现出多刺激响应性,从而为聚合物体系引入了复杂性和可行的功能性。使用轮廓分析张力测定法(PAT)研究了合成聚合物的表面活性和临界聚集浓度(CAC),揭示了不同的聚集和自组装行为。利用低温电子显微镜(Cryo-EM)和小角X射线散射(SAXS)研究了含花青定聚合物形成的类分形聚集体。本研究将花青定化学丰富多彩的动态平衡与聚合物化学联系起来,为进一步研究花青定-聚合物相互作用以及开发响应性聚合物的可调材料性能铺平了道路。