Micro/Nanophysics Research Laboratory, School of Engineering , Royal Melbourne Institute of Technology (RMIT University) , Melbourne , Victoria 3001 , Australia.
Advanced Materials and Industrial Chemistry Group, School of Applied Sciences , Royal Melbourne Institute of Technology (RMIT University) , Melbourne , Victoria 3001 , Australia.
Anal Chem. 2018 Apr 17;90(8):5335-5342. doi: 10.1021/acs.analchem.8b00466. Epub 2018 Apr 6.
While many microfluidic devices have been developed for sensing and others for actuation, few devices can perform both tasks effectively and simultaneously on the same platform. In piezoelectric sensors and actuators, this is due to the opposing operating requirements for sensing and actuation. Sensing ideally requires narrow resonant peaks characterized by high quality factors, such as those found in quartz crystals. However, these materials usually have poor electromechanical coupling coefficients that are not ideal for actuation. In this work, we show that it is possible to achieve both sensing and actuation simultaneously on a shared device by exploiting the distinct advantages of both bulk waves for effective mass sensing and surface waves for highly efficient microfluidic actuation through a unique hybrid surface and bulk acoustic wave platform. In light of the recent resurgence of interest in portable inhaled insulin devices for personalized diabetes management, we demonstrate the use of this technology for efficient aerosolization of insulin for inhalation without denaturing the protein, while being able to concurrently detect the residual mass of the un-nebulized insulin remaining on the device such that the actual dose delivered to the patient can be determined in real time.
虽然已经开发出许多用于感测的微流控设备和用于致动的微流控设备,但很少有设备能够在同一平台上同时有效地执行这两个任务。在压电传感器和致动器中,这是由于感测和致动的操作要求相反。感测理想情况下需要具有窄谐振峰的特征,这些谐振峰的品质因数很高,例如在石英晶体中发现的品质因数。然而,这些材料通常具有较差的机电耦合系数,不适合致动。在这项工作中,我们通过利用体波在有效质量感测方面的独特优势和表面波在高效微流控致动方面的独特优势,展示了在共享设备上同时进行感测和致动的可能性,这是通过独特的混合表面和体声波平台实现的。鉴于最近人们对用于个性化糖尿病管理的便携式吸入胰岛素装置重新产生了兴趣,我们展示了这项技术在不使蛋白质变性的情况下,能够有效地将胰岛素雾化以供吸入,同时能够同时检测设备上剩余的未雾化胰岛素的残留质量,以便能够实时确定实际输送给患者的剂量。