Shanghai Key Laboratory of Molecular Catalysis and Innovative Materials, Department of Chemistry, Fudan University, 2005 Songhu Road, Shanghai, 200438, China.
Department of Chemistry and International Institute of Nanotechnology, Northwestern University, 2145 Sheridan Road, Evanston, IL, 60208, USA.
Adv Mater. 2022 Sep;34(35):e2202287. doi: 10.1002/adma.202202287. Epub 2022 Jul 28.
The rapid, discriminative, and portable detection of highly toxic chemical warfare agents is extremely important for response to public security emergencies but remains a challenge. One plausible solution involves the integration of porous molecular traps onto a photoelectrochemical (PEC) sensor. Here, a fast and facile protocol is developed to fabricate sub-1 nm AgNPs encapsulated hydrogen-bonded organic framework (HOF) nanocomposite materials through an in situ photoreduction and subsequent encapsulation process. Compared to traditional semiconductors and selected metal-organic frameworks (MOF) materials, these AgNPs@HOFs show significantly enhanced photocurrent. Most importantly, the portable PEC device based on AgNPs@HOF-101 can selectively recognize 13 different mustard gas simulants, including 2-chloroethyl ethyl sulfide (CEES), based on synergistic size-exclusion and specific recognition. The extremely low detection limit for CEES (15.8 nmol L ), reusability (at least 30 cycles), and long-term working stability (at least 30 d) of the portable PEC device warrant its use as a chemical warfare agents (CWAs) sensor in practical field settings. More broadly, this work indicates that integrating porous molecular traps onto PEC sensors offers a promising strategy to further develop portable devices for CWAs detection with both ultrahigh sensitivity and selectivity.
快速、有区别且便携的高毒性化学战剂检测对于应对公共安全突发事件至关重要,但这仍然是一个挑战。一种可行的解决方案涉及将多孔分子陷阱集成到光电化学(PEC)传感器上。在这里,开发了一种快速简便的方案,通过原位光还原和随后的封装过程来制造亚 1nm 的 AgNPs 封装的氢键有机框架(HOF)纳米复合材料。与传统半导体和选定的金属有机框架(MOF)材料相比,这些 AgNPs@HOFs 显示出显著增强的光电流。最重要的是,基于 AgNPs@HOF-101 的便携式 PEC 设备可以基于协同的尺寸排阻和特异性识别,选择性地识别 13 种不同的芥子气模拟物,包括 2-氯乙基乙基硫醚(CEES)。该便携式 PEC 设备对 CEES 的极低检测限(15.8nmol L)、可重复使用性(至少 30 次循环)和长期工作稳定性(至少 30 天)使其可用于实际现场环境中的化学战剂(CWA)传感器。更广泛地说,这项工作表明,将多孔分子陷阱集成到 PEC 传感器上为进一步开发具有超高灵敏度和选择性的便携式 CWA 检测设备提供了一种很有前途的策略。