Thomas Guillaume, Spitzer Denis
Nanomatériaux pour les Systèmes Sous Sollicitations Extrêmes (NS3E), UMR 3208 ISL/CNRS/UNISTRA, French-German Research Institute of Saint-Louis, 5, rue du Général Cassagnou, Saint-Louis 68300, France.
ACS Appl Mater Interfaces. 2021 Oct 6;13(39):47185-47197. doi: 10.1021/acsami.1c07994. Epub 2021 Sep 21.
Nanostructured microcantilevers have shown promise for sensing application of molecules in the vapor phase. Nanostructures have improved the molecule capture ability of microcantilevers by highly enhancing the surface of capture. Here, to improve the sensitivity and selectivity of a commercial microcantilever without functionalization, we developed 3D core-shell titanium dioxide@manganese dioxide (TiO@MnO) nanorod arrays on a microcantilever, which exhibited a high enhancement in the sensing performance beyond that of 1D nanostructures for the detection of dimethyl methylphosphonate, a simulant of sarin.
纳米结构微悬臂梁在气相分子传感应用中已展现出潜力。纳米结构通过大幅增强捕获表面,提高了微悬臂梁的分子捕获能力。在此,为提高未经功能化处理的商用微悬臂梁的灵敏度和选择性,我们在微悬臂梁上制备了三维核壳结构的二氧化钛@二氧化锰(TiO@MnO)纳米棒阵列,在检测沙林模拟物甲基膦酸二甲酯时,该阵列的传感性能相较于一维纳米结构有了显著提高。