首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Electrochemically-synthesized tungstate nanocomposites gamma-WO3/CuWO4 and gamma-WO3/NiWO4 thin films with improved band gap and photoactivity for solar-driven photoelectrochemical water oxidation
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Electrochemically-synthesized tungstate nanocomposites gamma-WO3/CuWO4 and gamma-WO3/NiWO4 thin films with improved band gap and photoactivity for solar-driven photoelectrochemical water oxidation

机译:电化学合成钨酸盐纳米复合材料γ-WO3 / CUWO4和γ-WO3 / NIWO4薄膜,具有改进的带隙和太阳能光电电化学水氧化的带隙和光度

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The main aim of this study was to synthesize and characterise tungstate (WO3) nanocomposites with its metal-based nanostructures, such as copper (II) tungstate (CuWO4) and nickel tungsten oxide (NiWO4), as visible-light active thin film photoanodes for solar-driven photoelectrochemical (PEC) water oxidation. FE-SEM and AFM results showed that the bare as-deposited WO3 films were transformed into polycrystalline WO3 structure with highly agglomerated surfaces and roughness during the annealing-induced crystallisation process. XRD results suggested that the bare as-deposited WO3 films undergone phase transformation process from amorphous to the photoactive monoclinic-I (gamma-WO3) at 550 degrees C. XPS results indicated the existence of WO42-, Ni2+ and Cu2+ ions at 35.58 eV, 856 eV and 932.4 eV, respectively. Through the formation of WO3 nanocomposites, the energy band gap was effectively lowered from 2.7 eV (gamma-WO3) - 2.3 eV (gamma-WO3/CuWO4) - 2.1 eV (gamma-WO3/NiWO4) as estimated from the UV-Vis spectra. Finally, the corresponding photoactivity of WO3 nanocomposites was estimated by measuring the photocurrent density and gamma-WO3/NiWO4 nanocomposite structure was found to give the highest photocurrent density of 400 mu A/cm(2) at 1.5 V vs Ag/AgCl (4 M KCl). (C) 2018 Elsevier B.V. All rights reserved.
机译:该研究的主要目的是用其金属基纳米结构合成和表征钨(WO3)纳米复合材料,例如铜(II)钨(CuWO4)和镍氧化镍(NiWO 4),作为可见光活性薄膜光阳极太阳能驱动的光电化学(PEC)水氧化。 Fe-SEM和AFM结果表明,在退火诱导的结晶过程中,将裸沉积的WO3薄膜转化为多晶WO3结构,在高凝聚的表面和粗糙度下粗糙。 XRD结果表明,在550℃下,裸沉积的WO3薄膜从非晶对光活性单斜晶-i(γ-WO3)的相变法得到了相变过程。XPS结果表明,在35.58eV下存在WO42-,Ni2 +和Cu2 +离子的存在。 856ev和932.4 ev。通过形成WO3纳米复合材料,从2.7eV(γ-WO3) - &gt有效降低了能带隙。 2.3eV(Gamma-WO3 / CUWO4) - & 2.1 EV(Gamma-WO3 / NIWO4)估计来自UV-VIS光谱。最后,通过测量光电流密度和γ-WO3 / NiWO4纳米复合结构估计WO3纳米复合材料的相应光性,并在1.5V VS Ag / AgCl下给出400μma/ cm(2)的最高光电流密度(4米KCL)。 (c)2018年elestvier b.v.保留所有权利。

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