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Shape Controlled Synthesis of Copper Vanadate Platelet Nanostructures Their Optical Band Edges and Solar-Driven Water Splitting Properties

机译:形状控制的钒酸铜血小板纳米结构的合成其光带边缘和太阳能驱动的水分解特性

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摘要

We report the morphological and size tailored rational and facile synthesis of copper vanadate nanostructures via sonication assisted sol gel method. Field emission scanning electron microscopy (FESEM), indicated irregular and nanoflakes morphologies for the as synthesized copper vanadate (CV-120) and copper vanadate calcined at 250 °C (CV-250). The semispherical platelets shaped morphology revealed for the copper vanadate calcined at 550 °C (CV-500). The XRD patterns confirm the monoclinic and triclinic crystal phases for CV-250 and CV-500, respectively. The optical properties of CV-250 and CV-500 via UV-DRS showed significant absorption in the visible regime at λ = 565 nm and 670 nm with band gap 2.2 eV and 1.84 eV, respectively as calculated from Kubelka-Munk (KM) equation via Tauc’s plot. The values of band edge positions of CV-250 and CV-550 straddle with the hydrogen (HER) and oxygen evolution reaction (OER) potentials. The photoelectrodes of CV-250 and CV-500 fabricated by adsorption desorption method to test their photoelectrochemical (PEC) water splitting performance in the three-electrode cell. The onset photocurrent potential is observed at ~0.42 V, which reached to saturation at 1.05 V. The photocurrent density at saturation is ~0.65 mA/cm2 for CV-250 and CV-500, respectively.
机译:我们报告了通过超声辅助溶胶凝胶法的形态和大小量身定制的合理和方便的合成钒酸铜纳米结构。场发射扫描电子显微镜(FESEM)显示了合成的钒酸铜(CV-120)和在250 C(CV-250)煅烧的钒酸铜的不规则和纳米薄片形态。在550°C(CV-500)下煅烧的钒酸铜呈半球形片状形态。 XRD图谱分别证实了CV-250和CV-500的单斜晶和三斜晶相。根据Kubelka-Munk(KM)方程计算,通过UV-DRS的CV-250和CV-500的光学特性在可见光区的λ= 565 nm和670 nm处具有明显的吸收,带隙分别为2.2 eV和1.84 eV。通过陶克的阴谋。 CV-250和CV-550的能带边缘位置值与氢(HER)和氧放出反应(OER)电位交叉。通过吸附解吸法制备的CV-250和CV-500光电电极测试其在三电极电池中的光电化学(PEC)水分解性能。 CV-250和CV-500的起始光电流电势在〜0.42 V处达到饱和,在1.05 V时达到饱和;在饱和时的光电流密度为〜0.650.6mA / cm 2

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