Cai Shengran, Li Wei, Xu Pengcheng, Xia Xiaoyuan, Yu Haitao, Zhang Sen, Li Xinxin
State Key Lab of Transducer Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.
College of Life and Environmental Sciences, Shanghai Normal University, 100 Guilin Road, Shanghai 200234, China.
Analyst. 2019 Jun 21;144(12):3729-3735. doi: 10.1039/c8an02508h. Epub 2019 Apr 9.
The detection of organophosphorus (OP) compounds, which are extremely toxic, is a requirement in many application fields such as food security. Mass-type chemical sensors based on ultra-sensitive resonant microcantilevers exhibit high comparative advantages in OP compound detection. However, it is still a big challenge to construct a sensing film in situ from corrosive precursors on resonant cantilevers for batch fabrication. In this work, Parylene-C is patterned and a sample reservoir is formed on the free-end of resonant microcantilever for constructing the sensing material directly. Not only utilized for corrosive precursor loading and in situ sensing material construction, the Parylene-C film can also be used to effectively protect the integrated elements from damage by corrosive substances. For extremely toxic OP molecule detection, a typical metal-organic framework (MOF) of UiO-66 film has been regioselectively constructed in situ on the Parylene-C patterned microcantilevers. A limit of detection (LOD) of 5 ppb for the OP simulant dimethyl methylphosphonate (DMMP) is achieved. The in situ MOF construction method manifests satisfactory consistency for sensor batch fabrication. The DMMP sensing mechanism is identified as the specific host-guest interaction between the UiO-66 and OP molecule.
有机磷(OP)化合物具有极高的毒性,其检测在食品安全等众多应用领域中是一项必要要求。基于超灵敏共振微悬臂梁的质量型化学传感器在OP化合物检测方面展现出高度的比较优势。然而,在共振悬臂梁上由腐蚀性前驱体原位构建传感膜以进行批量制造仍是一项巨大挑战。在这项工作中,聚对二甲苯-C被图案化,并在共振微悬臂梁的自由端形成一个样品储存器,以便直接构建传感材料。聚对二甲苯-C膜不仅用于装载腐蚀性前驱体和原位构建传感材料,还可有效保护集成元件免受腐蚀性物质的损害。对于剧毒的OP分子检测,已在聚对二甲苯-C图案化的微悬臂梁上原位区域选择性地构建了典型的金属有机框架(MOF)UiO-66膜。对OP模拟物甲基膦酸二甲酯(DMMP)实现了5 ppb的检测限。原位MOF构建方法在传感器批量制造方面表现出令人满意的一致性。DMMP传感机制被确定为UiO-66与OP分子之间的特定主客体相互作用。