首页> 外文期刊>ACS applied materials & interfaces >1T-Phase Transition Metal Dichalcogenides (MoS2, MoSe2, WS2, and WSe2) with Fast Heterogeneous Electron Transfer: Application on Second-Generation Enzyme-Based Biosensor
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1T-Phase Transition Metal Dichalcogenides (MoS2, MoSe2, WS2, and WSe2) with Fast Heterogeneous Electron Transfer: Application on Second-Generation Enzyme-Based Biosensor

机译:具有快速异质电子转移的1T相过渡金属二均磷酸(MOS2,MOSE2,WS2和WSE2):在第二代酶的生物传感器上应用

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摘要

Two-dimensional transition metal dichalcogenides (TMDs) have been in the spotlight for their intriguing properties, including a tunable band gap and fast heterogeneous electron-transfer (HET) rate. Understandably, they are especially attractive in the field of electrochemical biosensors. In this article, HET capabilities of various TMDs (MoS2, MoSe2, WS2, and WSe2) within group VI chemically exfoliated via t-BuLi intercalation are studied and these capabilities are used in the second generation electrochemical glucose biosensor. Strikingly, tungsten dichalcogenides (WS2 and WSe2) exhibit superior HET properties compared to that of their molybdenum counterparts (MoS2 and MoSe2). When incorporated into second generation glucose biosensors, WS2 and WSe2 generated a higher electrochemical responses than that of MoS2 and MoSe2, following the same trend as expected. The commendable performance by WX2 is attributed to the dominance of 1T phase, revealed by characterization data. The developed and optimized 1T WX2-based biosensor achieved analytical requirements of selectivity, wide linear ranges, as well as low limits of detection and quantification. The outstanding electrochemical performances of WS2 and WSe2 are to be recognized, adding on to the fact that they are not decorated with any metal nanoparticles. This is imperative to showcase the real potential of two-dimensional TMDs in electrochemical biosensors.
机译:二维过渡金属二甲基甲基(TMDS)已经在其有趣性质的聚焦中,包括可调谐带隙和快速的异构电子转移(HET)速率。可以理解的是,它们在电化学生物传感器领域特别有吸引力。在本文中,研究了通过T-Buli嵌入的VI组VI组的各种TMDS(MOS2,MOSE2,WS2和WSE2)的HET能力,并且这些能力用于第二代电化学葡萄糖生物传感器。尖锐的是,与它们的钼对应物(MOS2和MOSE2)相比,钨二甲基甲基化物(WS2和WSE2)表现出优异的HET性质。当掺入第二代葡萄糖生物传感器中时,WS2和WSE2在与预期相同的趋势之后产生比MOS2和MOSE2更高的电化学响应。 WX2的值得称道的性能归因于1T相的主导地位,通过表征数据揭示。开发和优化的基于1T WX2的生物传感器实现了选择性,宽线性范围的分析要求,以及低限制的检测和量化。将识别出突出的WS2和WSE2的电化学性能,并加入了它们没有任何金属纳米颗粒装饰的事实。这是展示电化学生物传感器中二维TMDS的实际电位的迫使。

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