Institute of Material Research and Engineering, A*STAR (Agency for Science, Technology and Research), 2 Fusionopolis Way, Innovis, #08-03, Singapore 138634.
Nanoscale. 2017 Dec 14;9(48):19255-19262. doi: 10.1039/c7nr04697a.
Gold nanoparticles (AuNPs) coated with responsive polymers gained considerable interest due to their controllable size, good stability, and fast environmental response suitable for biological applications and sensing. Here we report on a simple and efficient method for the synthesis of stable and redox responsive AuNPs using organometallic polyelectrolytes in aqueous solutions of HAuCl. In the redox reaction, positively or negatively charged poly(ferrocenylsilanes) (PFS/PFS) served as reducing agents, and also as stabilizing polymers. Due to their unique tunable electrostatic and electrosteric protection, AuNPs coated with PFS, (PFS)@AuNPs, possess high redox sensitivity, with reversible, repetitive, sustainable color switching between the assembled (purple color) and disassembled (red color) states as evidenced by UV-Vis absorption and TEM measurements. Feasibility studies reported here indicate that the particles described can be applied as a colorimetric probe for the detection of redox molecules, e.g. vitamin C, in a controlled and facile manner.
金纳米粒子(AuNPs)表面涂覆有响应性聚合物,由于其可控的尺寸、良好的稳定性以及适合生物应用和传感的快速环境响应,引起了相当大的关注。在这里,我们报道了一种简单有效的方法,可在 HAuCl 的水溶液中使用金属有机聚电解质合成稳定且具有氧化还原响应性的 AuNPs。在氧化还原反应中,带正电荷或带负电荷的聚(二茂铁基硅烷)(PFS/PFS)用作还原剂,同时也用作稳定聚合物。由于其独特的可调静电和空间位阻保护,用 PFS 涂覆的 AuNPs(PFS)@AuNPs 具有高氧化还原灵敏度,通过 UV-Vis 吸收和 TEM 测量证明其在组装(紫色)和去组装(红色)状态之间具有可逆、可重复、可持续的颜色切换。这里报道的可行性研究表明,所描述的颗粒可用作检测氧化还原分子(例如维生素 C)的比色探针,以实现可控且简便的检测。