School of Chemistry, UNSW Sydney , Sydney, New South Wales 2052, Australia.
Key Laboratory of Applied Surface and Colloid Chemistry, Ministry of Education, School of Chemistry & Chemical Engineering, Shaanxi Normal University , Xi'an 710119, PR China.
ACS Appl Mater Interfaces. 2017 Dec 13;9(49):43377-43385. doi: 10.1021/acsami.7b14657. Epub 2017 Nov 28.
Ionic liquids (IL) have been regarded as promising electrolytes as substitutes for volatile aqueous or organic solvents for electrochemical gas sensors. However, ILs are viscous, and the slow diffusion of gas molecules leads to poor sensitivity and sluggish response times. Herein, we describe a strategy using an array of microstrips of IL containing magnetic nanoparticles as nanostirrers for enhanced mass transport and gas sensing. Magnetic CoFeO nanoparticles are synthesized and dispersed in a hydrophobic IL [BMP][Ntf]. First, the convection effect of the IL dispersion was studied using the reversible redox couple ferrocene/ferrocenium ion. In a rotating magnetic field, steady-state currents for oxidation of dissolved ferrocene are three to five times greater than that in an unstirred solution. Then, the IL dispersion is micropatterned onto a gold electrode using microcontact printing. A self-assembled monolayer was printed onto a gold surface creating 70 μm wide hydrophobic lines with a 30 μm gap between them. Upon applying the IL dispersion into the gap, a 30 μm wide array of microstrips was successfully fabricated. The system is demonstrated as an oxygen sensor in the range of volume fraction of O of 50-500 ppm giving a linear calibration with a sensitivity of 1.94 nA cm ppm.
离子液体(IL)已被视为有前途的电解质,可替代挥发性水或有机溶剂用于电化学气体传感器。然而,IL 具有粘性,气体分子的扩散缓慢导致灵敏度差和响应时间缓慢。在此,我们描述了一种使用包含磁性纳米粒子的 IL 微带阵列作为纳米搅拌器的策略,以增强传质和气体传感。磁性 CoFeO 纳米粒子被合成并分散在疏水性 IL [BMP][Ntf] 中。首先,使用可逆氧化还原偶对二茂铁/二茂铁离子研究了 IL 分散体的对流效应。在旋转磁场中,溶解的二茂铁氧化的稳态电流比未搅拌溶液中的电流大 3 到 5 倍。然后,使用微接触印刷将 IL 分散体微图案化到金电极上。通过在金表面打印自组装单分子层,形成了 70μm 宽的疏水性线,它们之间的间隙为 30μm。将 IL 分散体施加到间隙中后,成功制造了 30μm 宽的微带阵列。该系统在体积分数为 50-500 ppm 的 O 范围内被证明是一种氧气传感器,具有 1.94 nA cm ppm 的线性校准灵敏度。