首页> 外文期刊>ACS applied materials & interfaces >Highly Sensitive Thin-Film Field-Effect Transistor Sensor for Ammonia with the DPP-Bithiophene Conjugated Polymer Entailing Thermally Cleavable tert-Butoxy Groups in the Side Chains
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Highly Sensitive Thin-Film Field-Effect Transistor Sensor for Ammonia with the DPP-Bithiophene Conjugated Polymer Entailing Thermally Cleavable tert-Butoxy Groups in the Side Chains

机译:具有DPP-联噻吩共轭聚合物的氨的高灵敏度薄膜场效应晶体管传感器,在侧链中具有可热裂解的叔丁氧基

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摘要

The sensing and detection of ammonia have received increasing attention in recent years because of the growing emphasis on environmental and health issues. In this paper, we report a thin-film field-effect transistor (FET)-based sensor for ammonia and other amines with remarkable high sensitivity and satisfactory selectivity by employing the DPP-bithiophene conjugated polymer pDPPBu-BT in which tert-butoxycarboxyl groups are incorporated in the side chains. This polymer thin film shows p-type semiconducting property. On the basis of TGA and FT-IR analysis, tert-butoxycarboxyl groups can be transformed into the -COOH ones by eliminating gaseous isobutylene after thermal annealing of pDPPBu-BT thin film at 240 C. The FET with the thermally treated thin film of pDPPBu-BT displays remarkably sensitive and selective response toward ammonia and volatile amines. This can be attributed to the fact that the elimination of gaseous isobutylene accompanies the formation of nanopores with the thin film, which will facilitate the diffusion and interaction of ammonia and other amines with the semiconducting layer, leading to high sensitivity and fast response for this FET sensor. This FET sensor can detect ammonia down to 10 ppb and the interferences from other volatile analytes except amines can be negligible.
机译:近年来,由于对环境和健康问题的日益重视,氨的感测和检测受到越来越多的关注。在本文中,我们报告了一种基于薄膜场效应晶体管(FET)的氨和其他胺类传感器,该传感器采用DPP-联噻吩共轭聚合物pDPPBu-BT,其中叔丁氧基羧基为纳入侧链。该聚合物薄膜显示出p型半导体性质。在TGA和FT-IR分析的基础上,可以通过在pDPPBu-BT薄膜在240℃下进行热退火后消除气态异丁烯,将叔丁氧基羧基转变为-COOH基团。带有pDPPBu热处理薄膜的FET -BT对氨和挥发性胺显示出非常敏感和选择性的响应。这可以归因于这样的事实,即消除气态异丁烯伴随着薄膜形成纳米孔,这将促进氨和其他胺与半导体层的扩散和相互作用,从而导致该FET的高灵敏度和快速响应传感器。该FET传感器可以检测低至10 ppb的氨,来自胺类以外的其他挥发性分析物的干扰可以忽略不计。

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