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Ultrasensitive flexible graphene based field-effect transistor (FET)-type bioelectronic nose

机译:基于超灵敏柔性石墨烯的场效应晶体管(FET)型生物电子鼻

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摘要

Rapid and precise discrimination of various odorants is vital to fabricating enhanced sensing devices in the fields of disease diagnostics, food safety, and environmental monitoring. Here, we demonstrate an ultrasensitive and flexible field-effect transistor (FET) olfactory system, namely, a bioelectronic nose (B-nose), based on plasma-treated bilayer graphene conjugated with an olfactory receptor. The stable p- and n-type behaviors from modified bilayer graphene (MBLG) took place after controlled oxygen and ammonia plasma treatments. It was integrated with human olfactory receptors 2AG1 (hOR2AG1: OR), leading to the formation of the liquid-ion gated FET-type platform. ORs bind to the particular odorant amyl butyrate (AB), and their interactions are specific and selective. The B-noses behave as flexible and transparent sensing devices and can recognize a target odorant with single-carbon-atom resolution. The B-noses are ultrasensitive and highly selective toward AB. The minimum detection limit (MDL) is as low as 0.04 fM (10 ~(-15); signal-to-noise: 4.2), and the equilibrium constants of OR-oxygen plasma-treated graphene (OR-OG) and ammonia plasma-treated graphene (-NG) are ca. 3.44 × 10 ~(14) and 1.47 × 10 ~(14) M ~(-1), respectively. Additionally, the B-noses have long-term stability and excellent mechanical bending durability in flexible systems.
机译:在疾病诊断,食品安全和环境监测领域中,快速准确地区分各种气味对制造增强型传感设备至关重要。在这里,我们展示了一种超灵敏且灵活的场效应晶体管(FET)嗅觉系统,即基于与嗅觉受体缀合的经过等离子体处理的双层石墨烯的生物电子鼻(B-nose)。改性双层石墨烯(MBLG)的稳定的p型和n型行为发生在受控的氧气和氨气等离子体处理之后。它与人类嗅觉受体2AG1(hOR2AG1:OR)整合在一起,从而形成了液离子门控FET型平台。 OR与特定的丁酸戊酯(AB)结合,它们之间的相互作用是特异性和选择性的。 B鼻子的行为就像是灵活而透明的传感设备,并且可以识别具有单个碳原子分辨率的目标气味剂。 B鼻子对AB非常敏感并且具有很高的选择性。最小检出限(MDL)低至0.04 fM(10〜(-15);信噪比:4.2),以及经氧氧等离子体处理的石墨烯(OR-OG)和氨等离子体的平衡常数经处理的石墨烯(-NG)约为分别为3.44×10〜(14)和1.47×10〜(14)M〜(-1)。此外,B型鼻头在柔性系统中具有长期稳定性和出色的机械弯曲耐久性。

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