Radiation & Photochemistry Division, Bhabha Atomic Research Centre, Mumbai 400 085, India.
Polymers and Functional Materials Division, CSIR-Indian Institute of Chemical Technology, Hyderabad - 500 007, India and Academy of Scientific and Innovative Research (AcSIR), Ghaziabad - 201 002, Uttar Pradesh, India.
Org Biomol Chem. 2020 Nov 7;18(41):8414-8423. doi: 10.1039/d0ob01661f. Epub 2020 Oct 12.
Aggregation induced emission (AIE) active probes have attracted enormous attention due to their wide-spread and ever increasing number of applications in the sensing of chemically and biologically important molecules. AIE probes undergo drastic modulation in their photophysical features from a monomeric to aggregated state. In the current work, we report the aggregation of tetra-anionic Su-TPE (AIE active probe) in the presence of a cationic polyelectrolyte, poly(allylaminehydrochloride) (PAH). A supramolecular assembly is formed by the electrostatic interaction between cationic PAH and anionic Su-TPE molecules, which leads to drastic modulations in the spectral features of anionic Su-TPE upon addition of cationic PAH. The Su-TPE-PAH aggregate assembly has been investigated using various photophysical techniques, such as, ground-state absorption, steady-state and time-resolved emission spectroscopic techniques along with H NMR measurements. The Su-TPE-PAH aggregate assembly is found to be responsive towards the ionic strength of the medium and temperature which results in drastic modulations of the spectral features of the emissive supramolecular aggregate assembly. Finally, the specific recognition of an important bioanalyte, ATP, has been achieved using the formed Su-TPE-PAH supramolecular aggregate assembly as a sensing platform which displays good selectivity and high sensitivity towards ATP. Importantly, the developed sensor platform could also function in the human serum matrix, hence, demonstrating the potential of the established sensor platform for real-life applications in near future.
聚集诱导发光(AIE)活性探针由于在化学和生物重要分子的传感中广泛而不断增加的应用而受到极大关注。AIE 探针在其光物理性质上从单体到聚集态发生剧烈调制。在目前的工作中,我们报告了四阴离子 Su-TPE(AIE 活性探针)在阳离子聚电解质聚(烯丙基胺盐酸盐)(PAH)存在下的聚集。通过阳离子 PAH 和阴离子 Su-TPE 分子之间的静电相互作用形成超分子组装体,这导致在加入阳离子 PAH 后阴离子 Su-TPE 的光谱特征发生剧烈调制。使用各种光物理技术,例如,基态吸收、稳态和时间分辨发射光谱技术以及 1H NMR 测量,研究了 Su-TPE-PAH 聚集体组装体。发现 Su-TPE-PAH 聚集体组装体对介质的离子强度和温度有响应,这导致发光超分子组装体的光谱特征发生剧烈调制。最后,使用形成的 Su-TPE-PAH 超分子组装体作为传感平台,实现了对重要生物分析物 ATP 的特异性识别,该传感平台对 ATP 表现出良好的选择性和高灵敏度。重要的是,所开发的传感器平台也可以在人血清基质中发挥作用,因此,展示了在不久的将来将建立的传感器平台用于实际应用的潜力。