Lee Sun Bu, Heo Jaeyoung, Noh Seunghyun, An Tae Eun, Kim Gyeongsoo, Lee Gang Min, Kim Junggong, Kim Keunyoung, Lee Jongman, Kim Taeyeon, Song Changsik, Bae Han Yong
Department of Chemistry, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
RIST, Jeollanam-do, Gwangyang, 57801, Republic of Korea.
Adv Sci (Weinh). 2025 Jul 11:e06616. doi: 10.1002/advs.202506616.
The rapid and straightforward detection of explosive molecules is crucial for ensuring public safety and national security. Herein, a new series of conjugated polymers, referred to as the SP series, incorporating pentiptycene structures with organosulfur (sulfide and sulfonate ester) side chains, which is developed via sulfur(VI)-fluoride exchange (SuFEx) click chemistry. These polymers enhance the detection capabilities of nitroaromatic explosives through improved fluorescence quenching mechanisms. The method involved synthesizing β-sulfido sulfonyl fluorides via superbase-catalyzed thia-Michael reactions, introducing sulfonates through SuFEx conjugation, and assembling the polymers via palladium-catalyzed Sonogashira coupling. The SP-7 polymer, in particular, shows exceptional performance in explosives detection (DNT and TNT), achieving a >99% quenching efficiency within a few seconds, far surpassing existing polymer sensors. The fluorescence quenching dynamics via electron transfer in the SP-7 polymer are thoroughly elucidated using time-resolved photoluminescence and transient absorption spectroscopy, revealing that both static and dynamic quenching processes are highly effective. Remarkably, a straightforward yet powerful TLC-spotting-based technique is demonstrated that enables the rapid (<30 s) and selective detection of explosives under UV irradiation. This finding underscores the potential of SP series polymers in explosive practical detection, promising significant improvements in public security technologies.
快速、直接地检测爆炸物分子对于确保公共安全和国家安全至关重要。在此,通过六氟化硫交换(SuFEx)点击化学开发了一系列新的共轭聚合物,称为SP系列,其包含带有有机硫(硫化物和磺酸酯)侧链的戊省结构。这些聚合物通过改进的荧光猝灭机制提高了对硝基芳香族炸药的检测能力。该方法包括通过超强碱催化的硫杂迈克尔反应合成β-硫代磺酰氟,通过SuFEx共轭引入磺酸盐,并通过钯催化的Sonogashira偶联组装聚合物。特别是,SP-7聚合物在炸药检测(DNT和TNT)中表现出卓越的性能,在几秒钟内实现了>99%的猝灭效率,远远超过现有的聚合物传感器。利用时间分辨光致发光和瞬态吸收光谱对SP-7聚合物中通过电子转移的荧光猝灭动力学进行了深入研究,结果表明静态和动态猝灭过程都非常有效。值得注意的是,展示了一种简单而强大的基于薄层色谱斑点法的技术,该技术能够在紫外线照射下快速(<30秒)且选择性地检测炸药。这一发现突出了SP系列聚合物在炸药实际检测中的潜力,有望在公共安全技术方面取得重大改进。