Zhang Rongbo, Tian Xueqi, Zuo Minzan, Zhang Tao, Pangannaya Srikala, Hu Xiao-Yu
College of Materials Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing, 211106, China.
College of Chemistry and Materials, Jiangxi Normal University, Nanchang, 330022, China.
Adv Sci (Weinh). 2025 Jul;12(28):e2504993. doi: 10.1002/advs.202504993. Epub 2025 May 8.
A novel hydrogel-based biomimetic artificial leaf is fabricated by integrating host-guest interactions with covalent bonding. Specifically, a water-soluble tetraphenylethylene-embedded pillar[5]arene (m-TPEWP5), which exhibits aggregation-induced emission (AIE) property, is synthesized as the host molecule. An amphiphilic guest G is introduced to form a stable complex (HGSM) via non-covalent interactions. Subsequent copolymerization of HGSM with gelatin methacryloyl (GelMA) yields a hydrogel network (HGGelMA), which not only exhibits AIE characteristics but also enables encapsulation of the acceptor eosin Y (ESY), thereby resulting in the construction of an artificial light-harvesting system HGGelMA⊃ESY that serves as a biomimetic leaf. To emulate natural photosynthesis more closely and optimize the utilization of the collected energy, two organic reactions are performed within this artificial leaf: dehalogenation of bromoacetophenone derivatives and coupling of benzylamine. These reactions demonstrate remarkable catalytic activity and recycling ability during the photocatalytic process.
通过将主客体相互作用与共价键相结合,制备了一种新型的基于水凝胶的仿生人工叶。具体而言,合成了一种具有聚集诱导发光(AIE)特性的水溶性四苯基乙烯嵌入柱[5]芳烃(m-TPEWP5)作为主体分子。引入两亲性客体G,通过非共价相互作用形成稳定的复合物(HGSM)。随后,HGSM与甲基丙烯酰化明胶(GelMA)共聚产生水凝胶网络(HGGelMA),其不仅具有AIE特性,还能够包封受体曙红Y(ESY),从而构建了作为仿生叶的人工光捕获系统HGGelMA⊃ESY。为了更紧密地模拟自然光合作用并优化收集能量的利用,在该人工叶内进行了两个有机反应:溴代苯乙酮衍生物的脱卤反应和苄胺的偶联反应。这些反应在光催化过程中表现出显著的催化活性和循环能力。