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Flexible Self-Powered Electrochemical Photodetector Functionalized by Multilayered Tantalum Diselenide Nanocrystals

机译:柔性自动电化学光电探测器,由多层钽碳化物纳米晶体官能化

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摘要

Few layered transition metal dichalcogenides (TMDCs) are widely used in electrochemical systems due to their unique optical and electronic properties including applications over a large area. Despite the widespread use of 2D layered materials as active components of photoanode, electrochemical conversion studies of few-layered Tantalum diselenide (TaSe2) are still negligible. In view of this, the TaSe2 nanocrystals (NCs) are successfully synthesized by using the facile liquid-phase exfoliation (LPE) approach. Different physiochemical characterization confirms the inherent physical and optical properties of TaSe2 NCs. The flexible self-powered photoelectrochemical (PEC) type photodetector based on TaSe2 NCs achieves the highest photocurrent density (P-ph) of 20.8 mu A cm(-2) and photoresponsivity (R-ph) of 0.208 mA W-1 in 0.5 m KOH. TaSe2 NCs demonstrate the excellent self-driven ability and also unveil decent response under applied bias potential in different concentration of KOH electrolyte. Moreover, the electrode shows excellent ON/OFF switching stability up to 1000 s even after the 1 month of storage in the air. Importantly, the photodetector retains the P-ph of 15.8 mu A cm(-2) after 95 bending cycles of 120 degrees angle, displaying the great flexibility of TaSe2 NCs. This work demonstrates the potential of TaSe2 NCs for their extended application in PEC-type devices and flexible electronics.
机译:少量分层过渡金属二甲硅烷(TMDC)广泛用于电化学系统,因为它们独特的光学和电子性能,包括在大面积上的应用。尽管使用2D层状材料作为光电码的活性成分,但少数层钽蛋白(Tase2)的电化学转换研究仍然可以忽略不计。鉴于此,通过使用容易液相剥离(LPE)方法成功地合成了酪粉纳米晶体(NCS)。不同的物理化学表征证实了Tase2 NCS的固有物理和光学性质。基于Tase2 NCS的柔性自供电光电化学(PEC)型光电探测器实现了20.8μm的最高光电流密度(p-pH),0.208 mA W-1的光响应性(R-pH)为0.5米KOH。 Tase2 NCS证明了优异的自驱动能力,并且在不同浓度的KOH电解质中施加偏置电位下揭示了不良反应。此外,即使在空气中的1个月储存之后,电极也显示出高达1000秒的优异开/关开关稳定性。重要的是,在弯曲循环为120度角度的95°弯曲循环后,光电探测器保留15.8μm(-2)的p-pH,显示出Tase2 NC的柔韧性。这项工作展示了在PEC型器件和柔性电子产品中扩展应用的Tase2 NCS的潜力。

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