Torsi Luisa, Farinola Gianluca M, Marinelli Francesco, Tanese M Cristina, Omar Omar Hassan, Valli Ludovico, Babudri Francesco, Palmisano Francesco, Zambonin P Giorgio, Naso Francesco
Dipartimento di Chimica, Università degli Studi di Bari, 70126, Bari, Italy.
Nat Mater. 2008 May;7(5):412-7. doi: 10.1038/nmat2167. Epub 2008 Apr 20.
Organic thin-film transistor sensors have been recently attracting the attention of the plastic electronics community for their potential exploitation in novel sensing platforms. Specificity and sensitivity are however still open issues: in this respect chiral discrimination-being a scientific and technological achievement in itself--is indeed one of the most challenging sensor bench-tests. So far, conducting-polymer solid-state chiral detection has been carried out at part-per-thousand concentration levels. Here, a novel chiral bilayer organic thin-film transistor gas sensor--comprising an outermost layer with built-in enantioselective properties-is demonstrated to show field-effect amplified sensitivity that enables differential detection of optical isomers in the tens-of-parts-per-million concentration range. The ad-hoc-designed organic semiconductor endowed with chiral side groups, the bilayer structure and the thin-film transistor transducer provide a significant step forward in the development of a high-performance and versatile sensing platform compatible with flexible organic electronic technologies.
有机薄膜晶体管传感器最近因其在新型传感平台中的潜在应用而吸引了塑料电子学界的关注。然而,特异性和灵敏度仍然是悬而未决的问题:在这方面,手性识别本身就是一项科学技术成就,确实是最具挑战性的传感器基准测试之一。到目前为止,导电聚合物固态手性检测是在千分之一浓度水平上进行的。在此,展示了一种新型手性双层有机薄膜晶体管气体传感器,其最外层具有内置的对映选择性特性,显示出场效应放大灵敏度,能够在百万分之几十的浓度范围内对光学异构体进行差分检测。具有手性侧基的特殊设计的有机半导体、双层结构和薄膜晶体管换能器在与柔性有机电子技术兼容的高性能通用传感平台的开发方面向前迈出了重要一步。