Materials Chemistry & Analysis Group, Department of Chemistry and Tyndall National Institute, University College Cork, Lee Maltings, Dyke Parade, Cork, Ireland. Centre for Research on Adaptive Nanostructures and Nanodevices (CRANN/AMBER), Trinity College Dublin, Dublin 2, Ireland.
Nanotechnology. 2019 Aug 9;30(32):324001. doi: 10.1088/1361-6528/ab192c. Epub 2019 Apr 15.
Silicon nanowire (Si NW) sensors have attracted great attention due to their ability to provide fast, low-cost, label-free, real-time detection of chemical and biological species. Usually configured as field effect transistors (FETs), they have already demonstrated remarkable sensitivity with high selectivity (through appropriate functionalisation) towards a large number of analytes in both liquid and gas phases. Despite these excellent results, Si NW FET sensors have not yet been successfully employed to detect single molecules of either a chemical or biological target species. Here we show that sensors based on silicon junctionless nanowire transistors (JNTs), the simplest possible transistors, are capable of detecting the protein streptavidin at a concentration as low as 580 zM closely approaching the single molecule level. This ultrahigh detection sensitivity is due to the intrinsic advantages of junctionless devices over conventional FETs. Apart from their superior functionality, JNTs are much easier to fabricate by standard microelectronic processes than transistors containing p-n junctions. The ability of JNT sensors to detect ultra-low concentrations (in the zeptomolar range) of target species, and their potential for low-cost mass production, will permit their deployment in numerous environments, including life sciences, biotechnology, medicine, pharmacology, product safety, environmental monitoring and security.
硅纳米线 (Si NW) 传感器因其能够提供快速、低成本、无标记、实时检测化学和生物物种的能力而受到极大关注。通常被配置为场效应晶体管 (FET),它们已经通过适当的功能化,在液相和气相中对大量分析物表现出了显著的灵敏度和高选择性。尽管取得了这些优异的结果,但 Si NW FET 传感器尚未成功用于检测单个化学或生物目标物种的分子。在这里,我们展示了基于硅结型纳米线晶体管 (JNT) 的传感器,这是最简单的晶体管,能够以接近单分子水平的 580 zM 超低浓度检测蛋白质链霉亲和素。这种超高检测灵敏度归因于结型器件相对于传统 FET 的固有优势。除了优越的功能外,JNT 比含有 p-n 结的晶体管更容易通过标准微电子工艺制造。JNT 传感器检测超低浓度(飞摩尔范围内)目标物种的能力,以及它们进行低成本大规模生产的潜力,将使其能够在包括生命科学、生物技术、医学、药理学、产品安全、环境监测和安全等众多环境中得到应用。