Shim Junoh, Sen Anamika, Park Keehyun, Park Heekyeong, Bala Arindam, Choi Hyungjun, Park Mincheol, Kwon Jae Young, Kim Sunkook
School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon, Gyeonggi-do 16419, Republic of Korea.
Department of Biological Sciences, Sungkyunkwan University, Suwon, Gyeonggi-do 16419, Republic of Korea.
ACS Nano. 2023 Nov 14;17(21):21719-21729. doi: 10.1021/acsnano.3c07045. Epub 2023 Oct 30.
Olfaction, a primal and effective sense, profoundly impacts our emotions and instincts. This sensory system plays a crucial role in detecting volatile organic compounds (VOCs) and realizing the chemical environment. Animals possess superior olfactory systems compared to humans. Thus, taking inspiration from nature, artificial olfaction aims to achieve a similar level of excellence in VOC detection. In this study, we present the development of an artificial olfaction sensor utilizing a nanostructured bio-field-effect transistor (bio-FET) based on transition metal dichalcogenides and the odor-binding protein LUSH. To create an effective sensing platform, we prepared a hexagonal nanoporous structure of molybdenum disulfide (MoS) using block copolymer lithography and selective etching techniques. This structure provides plenty of active sites for the integration of the LUSH protein, enabling enhanced binding with ethanol (EtOH) for detection purposes. The coupling of the biomolecule with EtOH influences the bio-FETs potential, which generates indicative electrical signals. By mimicking the sniffing techniques observed in , these bio-FETs exhibit an impressive limit of detection of 10% for EtOH, with high selectivity, sensitivity, and detection ability even in realistic environments. This bioelectric sensor demonstrates substantial potential in the field of artificial olfaction, offering advancements in VOC detection.
嗅觉,一种原始且有效的感官,对我们的情感和本能有着深远的影响。这个感官系统在检测挥发性有机化合物(VOCs)和感知化学环境方面起着至关重要的作用。与人类相比,动物拥有更优越的嗅觉系统。因此,从大自然中获取灵感,人工嗅觉旨在在VOC检测方面达到类似的卓越水平。在本研究中,我们展示了一种基于过渡金属二硫属化物和气味结合蛋白LUSH的纳米结构生物场效应晶体管(bio-FET)的人工嗅觉传感器的开发。为了创建一个有效的传感平台,我们使用嵌段共聚物光刻和选择性蚀刻技术制备了二硫化钼(MoS)的六边形纳米多孔结构。这种结构为LUSH蛋白的整合提供了大量活性位点,从而增强了与乙醇(EtOH)的结合以用于检测目的。生物分子与EtOH的耦合会影响生物场效应晶体管的电位,进而产生指示性电信号。通过模仿在[具体文献]中观察到的嗅探技术,这些生物场效应晶体管对EtOH的检测限低至10%,即使在实际环境中也具有高选择性、灵敏度和检测能力。这种生物电传感器在人工嗅觉领域显示出巨大的潜力,为VOC检测带来了进步。