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High-Entropy Alloy Nanoparticles As Catalyst For Nanomolar-Level Detection Of Neurotransmitter Serotonin In Serum

机译:高熵合金纳米粒子作为血清中神经递质血清蛋白的纳米摩尔水平检测的催化剂

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For the first time, high-entropy alloy (HEA) nanoparticles are used as electrochemical sensing catalyst to detect serotonin molecules with printed sensor chips. As a major neurotransmitter, serotonin contributes to a variety of biological and psychopathological processes and is considered as a biomarker for the diagnosis of various diseases. Herein, a senary HEA nanomaterial, PtPdRhRuIrNi, is synthesized as highly active catalyst for the electro-oxidation of serotonin. With the conductive graphene nanofiber (GNF) as support, the sensing material PtPdRhRuIrNi@GNF shows high sensitivity (LOD of 10 nM) and selectivity, and successfully detect serotonin in serum samples, exhibiting huge potential in biosensing field.
机译:首次,高熵合金(Hea)纳米颗粒用作电化学传感催化剂,以检测具有印刷传感器芯片的血清素分子。作为主要的神经递质,血清素有助于各种生物和精神病理学过程,被认为是诊断各种疾病的生物标志物。这里,在本文中,Senary HEA纳米材料PTPDRHRUIRNI合成为血清素的电氧化的高活性催化剂。用导电石墨烯纳米纤维(GNF)作为载体,感测材料PTPDRHRUIRNI @ GNF显示出高灵敏度(10nm)和选择性,并在血清样品中成功检测血清素,在生物传感器上表现出巨大的潜力。

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