Department of Chemical & Environmental Engineering, Univ. Zaragoza, Campus Rı́o Ebro, Zaragoza 50018, Spain.
Instituto de Nanociencia y Materiales de Aragón (INMA), CSIC-Universidad de Zaragoza, Zaragoza 50009, Spain.
ACS Appl Mater Interfaces. 2020 Sep 23;12(38):42622-42633. doi: 10.1021/acsami.0c07364. Epub 2020 Sep 9.
Cu-based metal-organic framework (MOF) microdevices are applied in sampling and preconcentration of nerve agents (NAs) diluted in gaseous streams. An in situ electrochemical-assisted synthesis of a Cu-benzene-1,3,5-tricarboxylate (BTC) thick film is carried out to functionalize a Cu-modified glass substrate. This simple, rapid, reproducible, and easy-to-integrate MOF synthesis approach enables the microfabrication of functional micro-preconcentrators with a large Brunauer-Emmett-Teller (BET) surface area (above 2000 cm) and an active pore volume (above 90 nL) for the efficient adsorption of nerve agent molecules along the microfluidic channel 2.5 cm in length. The equilibrium adsorption capacity of the bulk material has been characterized through thermogravimetric analysis after exposure to controlled atmospheres of a sarin gas surrogate, dimethyl methylphosphonate (DMMP), in both dry and humid conditions (30% RH at 293 K). Breakthrough tests at the ppm level (162 mg/m) reveal equilibrium adsorption capacities up to 691 mg/g. The preconcentration performance of such μ-devices when dealing with highly diluted surrogate atmosphere, i.e., 520 ppbV (2.6 mg/m) at 298 K, leads to preconcentration coefficients up to 171 for sample volume up to 600 STP cm. We demonstrate the potentialities of Cu-BTC micro-preconcentrators as smart first responder tools for "on-field" detection of nerve agents in the gas phase at relevant conditions.
基于铜的金属有机骨架 (MOF) 微器件应用于从气态流中稀释的神经毒剂 (NA) 的采样和预浓缩。原位电化学辅助合成苯-1,3,5-三甲酸 (BTC) 厚膜以功能化 Cu 修饰的玻璃基底。这种简单、快速、可重复且易于集成的 MOF 合成方法能够制造具有大 Brunauer-Emmett-Teller (BET) 表面积(超过 2000 cm)和有效孔体积(超过 90 nL)的功能微预浓缩器,用于沿微流道 2.5 厘米长度有效吸附神经毒剂分子。通过在 293 K 时在干燥和潮湿条件(30% RH)下暴露于沙林气体模拟物二甲甲基膦酸酯 (DMMP) 的受控气氛中,对块状材料进行热重分析来表征平衡吸附容量。在 ppm 水平(162 mg/m)的突破测试表明,平衡吸附容量高达 691 mg/g。在处理高度稀释的模拟气氛(即 298 K 时 520 ppbV(2.6 mg/m))时,此类 μ 器件的预浓缩性能导致浓缩系数高达 171,对于 600 STP cm 的样品体积。我们证明了 Cu-BTC 微预浓缩器作为在相关条件下用于气相中神经毒剂的“现场”检测的智能第一响应者工具的潜力。