High-Performance Ni 3 (HHTP) 2 Film-Based Flexible Field-Effect Transistor Gas Sensors.
Guirong LuBoyang ZongTian TaoYuehong YangQiuju LiShun MaoPublished in: ACS sensors (2024)
Conductive metal-organic frameworks (MOFs) have received increasing attention in recent years and present high application potential as sensing elements in electronic sensors. In this study, flexible field-effect transistor (FET) sensors based on conductive MOF, i.e., Ni 3 (HHTP) 2 , have been constructed. This Ni 3 (HHTP) 2 sensor has high sensitivity (detection limit of 56 ppb) as well as superior selectivity for NO 2 detection at room temperature, which is demonstrated by accurate gas detection in a mixed gas atmosphere. Moreover, by employing six flexible substrates, i.e., polyimide (PI), tape (PET), facemask, paper cup, tablecloth, and take-out bag (textile), we successfully demonstrate the universality of the flexible sensor construction with conductive MOF as sensing film on various substrates. This study of conductive MOF-based flexible electronic sensors offers a new opportunity for a wide range of sensing applications with wearable and portable electronic devices.
Keyphrases
- metal organic framework
- room temperature
- reduced graphene oxide
- low cost
- ionic liquid
- loop mediated isothermal amplification
- real time pcr
- label free
- wastewater treatment
- computed tomography
- pet ct
- solid state
- positron emission tomography
- carbon dioxide
- gold nanoparticles
- blood pressure
- heart rate
- human health
- risk assessment
- transition metal