Vimala P, Geege A Sharon, Mohankumar N, Arun Samuel T S, Ananth Kumar T, Dhanaselvam P Suveetha, Anand I Vivek
Electronics and Communication Engineering, Dayananda Sagar College of Engineering, Bengaluru, India.
Electronics and Communication Engineering, National Engineering College, Kovilpatti, India.
Sci Rep. 2025 Apr 30;15(1):15223. doi: 10.1038/s41598-025-99817-9.
The persisting SARS-CoV-2 genetic mutation could unintentionally increase human transmission, mortality, and aggravation. Since no specific pharmaceutical therapies or vaccinations exist, rapid detection and successful treatment are essential for managing the COVID-19 pandemic. BioTFETs exhibit superior sensitivity and faster response times than bioFETs, which are more vulnerable to substantial subthreshold swing and short-channel effects. This article presents the Dielectrically Modulated-Double Gate-Heterojunction-Tunnel FET-based biosensor (DG-bioHTFET) specifically engineered to identify and detect the nucleocapsid protein and RNA biomolecules with specific permittivity (k) of SARS-CoV-2 biomolecules embedded in the nanogaps. At V = 1.5 V, the proposed device achieves a drain current (I) of 2.32 × 10 A/µm. At k = 5 and k = 3.64, the I/I ratios are 3.550 × 10 and 3.403 × 10, respectively. The data suggest that the device exhibits increased sensitivity to biomolecules possessing elevated dielectric constants. It is feasible to design ultra-sensitive TFET biosensors as a bio-recognition unit, which offers the benefits of rapid label-free detection and high sensitivity. The device exhibits superior performance in terms of high drain current with enhanced sensitivity for precise biosensing applications.
持续存在的新冠病毒基因突变可能会意外增加人际传播、死亡率和病情严重程度。由于目前尚无特定的药物疗法或疫苗,快速检测和成功治疗对于控制新冠疫情至关重要。生物隧穿场效应晶体管(BioTFET)比生物场效应晶体管(bioFET)表现出更高的灵敏度和更快的响应时间,后者更容易受到显著的亚阈值摆幅和短沟道效应的影响。本文介绍了一种基于介电调制双栅异质结隧道场效应晶体管的生物传感器(DG-bioHTFET),该传感器经过专门设计,用于识别和检测嵌入纳米间隙中的新冠病毒生物分子,这些生物分子具有特定的介电常数(k)。在V = 1.5 V时,该器件的漏极电流(I)达到2.32×10 A/μm。在k = 5和k = 3.64时,I/I比率分别为3.550×10和3.403×10。数据表明,该器件对具有较高介电常数的生物分子表现出更高的灵敏度。将超灵敏的隧穿场效应晶体管生物传感器设计为生物识别单元是可行的,它具有无需标记快速检测和高灵敏度的优点。该器件在高漏极电流方面表现出卓越性能,对精确的生物传感应用具有更高的灵敏度。