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Enhanced photosplitting of water using ultrathin cobalt sulfide nanoflakes-sensitized zinc oxide nanorods array

机译:使用超薄钴硫化物纳米薄片 - 敏化氧化锌阵列增强了水的光照

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We report synthesis and characterization of ultrathin cobalt sulfide nanoflakes (CoSx-NFs) sensitized zinc oxide nanorods (Z-NRs) array based thin films and their implementation as photoanodes for photoelectrochemical (PEC) splitting of water. Cobalt sulfide nanoflakes-sensitized zinc oxide nanorods (CoSx-NFs/Z-NRs) array based photoanodes were grown on fluorine-doped tin oxide substrate by a simple and versatile electrodeposition method. Maximum conversion efficiency of PEC cell was found 0.37% with a photocurrent density of 0.48 mA/cm(2) at a bias of 0.3 V/SCE in CoSx-NFs/Z-NRs-15 (loading of CoSx-NFs on Z-NRs by cyclic voltammetry for 15 cycles) based photoanodes. The photo-activity is 2.7 times larger than that of Z-NRs array-based photoanode. Experimental results reveal that sensitization by CoSx-NFs causes red shift in the band gap energy of Z-NRs photoanode. Lower band gap energy, suitable band redox potential, and marked absorption in visible light make CoSx-NFs/Z-NRs-15 thin films a promising material for photoanodes in PEC cells. A detailed analysis using X-ray diffraction (XRD), UV-Visible (UV-Visible) spectroscopy, field emission scanning electron microscope (FE-SEM), energy-dispersive analysis (EDX), electron impedance spectroscopy (EIS), Mott-Schottky (MS) analysis, applied bias photon-to-current conversion efficiency (ABPE), and incident photon to current conversion efficiency (IPCE) measurements has been carried out to substantiate our observations. The excellent performance of CoSx-NFs/Z-NRs allows the composite photoelectrode to have many potential applications as a photoanode material for H-2 production, nanoflakes-sensitized solar cells, and UV photodetector.
机译:我们报告了超薄钴硫化物纳米薄膜(COSX-NFS)敏化氧化锌纳米棒(Z-NRS)阵列的薄膜的合成和表征及其作为光电化学(PEC)分裂的光阳孔的实施。通过简单而通用的电沉积方法在氟掺杂型氧化锡基板上生长硫化钴纳米薄膜氧化锌纳米棒(COSX-NFS / Z-NRS)阵列的光桥。发现PEC细胞的最大转化效率0.37%,光电流密度为0.48mA / cm(2),在COSX-NFS / Z-NRS-15中的0.3V / SCE的偏压下(Z-NRS上的COSX-NFS的负载通过循环伏安法为15个循环)基础的光桥。光度活动比Z-NRS阵列的PhotoBode大2.7倍。实验结果表明,COSX-NFS的敏化导致Z-NRS PhotoNode的带隙能量中的红色移位。较低的带隙能量,合适的带氧化还原电位,并在可见光下标记的吸收使得COSX-NFS / Z-NRS-15薄膜是PEC细胞中光阳极的有希望的材料。使用X射线衍射(XRD),UV可见(UV可见)光谱,场发射扫描电子显微镜(Fe-SEM),能量分散分析(EDX),电子阻抗光谱(EIS),电子阻抗谱(EIS),Mott - Schottky(MS)分析,应用偏置光子到电流转换效率(ABPE),以及对电流转换效率(IPCE)测量的入射光子进行了实质性的观察结果。 COSX-NFS / Z-NRS的优异性能允许复合光电极具有许多潜在的应用作为H-2生产,纳米薄片敏化太阳能电池和UV光电探测器的光电码材料。

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