A sensitivity-enhanced field-effect chiral sensor

被引:0
|
作者
Luisa Torsi
Gianluca M. Farinola
Francesco Marinelli
M. Cristina Tanese
Omar Hassan Omar
Ludovico Valli
Francesco Babudri
Francesco Palmisano
P. Giorgio Zambonin
Francesco Naso
机构
[1] Università degli Studi di Bari,Dipartimento di Chimica
[2] 70126,Dipartimento di Chimica
[3] Centro di Eccellenza TIRES,Dipartimento di Ingegneria dell’Innovazione
[4] Università degli Studi di Bari,undefined
[5] 70126,undefined
[6] CNR ICCOM Bari,undefined
[7] Università degli Studi di Bari,undefined
[8] 70126,undefined
[9] Università degli Studi di Lecce,undefined
[10] 73100,undefined
来源
Nature Materials | 2008年 / 7卷
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摘要
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.
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页码:412 / 417
页数:5
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