Suppr超能文献

吖啶橙染料与对磺酸钠杯[4/6]芳烃大环配合物的多模式结合和刺激响应位移。

Multimode binding and stimuli responsive displacement of acridine orange dye complexed with p-sulfonatocalix[4/6]arene macrocycles.

机构信息

Radiation and Photochemistry Division, Bhabha Atomic Research Centre, Mumbai 400085, India.

Homi Bhabha National Institute, Anushaktinagar, Mumbai 400094, India.

出版信息

Phys Chem Chem Phys. 2020 Jun 17;22(23):13306-13319. doi: 10.1039/d0cp00030b.

Abstract

Interaction of acridine orange (AOH+) dye with water soluble anionic p-sulfonatocalix[n]arene (SCXn) hosts, SCX4 and SCX6, having different cavity dimensions, has been investigated using multispectroscopic techniques. Intriguing modulation in the photophysical properties of AOH+ upon interaction with SCXn hosts indicate the formation of different host-guest complexes at different regions of the host concentrations. At lower host concentrations, AOH+ undergoes SCXn assisted aggregation, causing a drastic reduction in fluorescence intensity. At higher host concentrations, aggregated-AOH+-SCXn complexes disintegrate and monomeric-AOH+-SCXn exo and inclusion complexes are eventually formed, leading to a huge fluorescence enhancement finally. Observed effects are more pronounced with SCX6 as compared to SCX4 host. Time-resolved fluorescence studies indicate that at very high host concentrations, there is also a diffusion-controlled dynamic quenching for both monomeric-AOH+-SCXn exo and inclusion complexes, caused by the free SCXn present in the solution, a phenomenon not reported before for such host-guest systems. The aggregated-AOH+-SCXn complexes at lower host concentration were employed to investigate displacement study using an antiviral drug, 1-adamantanamine (AD) and a neurotransmitter, acetylcholine (AcCh), as the competitive binders cum external stimuli, which resulted in a drastic recovery of the fluorescence reduced initially due to aggregation process. Though both the AOH+-SCXn systems act as efficient supramolecular assemblies in sensing AD and AcCh as the analytes through fluorescence "OFF-ON" mechanism, the effect is more pronounced for AOH+-SCX4 system as compared to AOH+-SCX6. SCXn induced interesting modulation in the photophysical properties of AOH+ and the stimulus responsive dye displacement observed for aggregated-AOH+-SCXn systems can expectedly find applications in fluorescence OFF-ON sensing, supramolecular functional materials and similar others.

摘要

吖啶橙(AOH+)染料与具有不同空腔尺寸的水溶性阴离子对磺酰基杯[n]芳烃(SCXn)主体 SCX4 和 SCX6 的相互作用已通过多光谱技术进行了研究。吖啶橙(AOH+)与 SCXn 主体相互作用时,其光物理性质发生了有趣的调制,表明在不同的主体浓度区域形成了不同的主体-客体配合物。在较低的主体浓度下,AOH+通过 SCXn 辅助聚集,导致荧光强度急剧降低。在较高的主体浓度下,聚集的-AOH+-SCXn 复合物解体,最终形成单体-AOH+-SCXn 外络合物和包络物,导致荧光强度大大增强。与 SCX4 主体相比,观察到的效果在 SCX6 中更为明显。时间分辨荧光研究表明,在非常高的主体浓度下,由于溶液中存在游离的 SCXn,单体-AOH+-SCXn 外络合物和包络物也会发生扩散控制的动态猝灭,这是以前从未报道过的这种主体-客体体系的现象。在较低的主体浓度下,聚集的-AOH+-SCXn 复合物被用来研究使用抗病毒药物 1-金刚烷胺(AD)和神经递质乙酰胆碱(AcCh)作为竞争结合物和外部刺激的置换研究,这导致由于聚集过程而最初降低的荧光强度急剧恢复。尽管 AOH+-SCXn 体系都作为有效的超分子组装体,通过荧光“OFF-ON”机制检测 AD 和 AcCh 作为分析物,但 AOH+-SCX4 体系的效果比 AOH+-SCX6 更为明显。SCXn 诱导 AOH+的光物理性质发生有趣的调制,并且观察到聚集的-AOH+-SCXn 体系中对刺激的响应染料置换,有望在荧光 OFF-ON 传感、超分子功能材料等方面得到应用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验