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首页> 外文期刊>Scientific reports. >Electrical and photocatalytic properties of boron-doped ZnO nanostructure grown on PET–ITO flexible substrates by hydrothermal method
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Electrical and photocatalytic properties of boron-doped ZnO nanostructure grown on PET–ITO flexible substrates by hydrothermal method

机译:水热法在PET-ITO柔性基材上生长硼掺杂ZnO纳米结构的电气和光催化性能

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Boron-doped zinc oxide sheet-spheres were synthesized on PET–ITO flexible substrates using a hydrothermal method at 90?°C for 5?h. The results of X-ray diffraction and X-ray photoelectron spectroscopy indicated that the B atoms were successfully doped into the ZnO lattice, the incorporation of B led to an increase in the lattice constant of ZnO and a change in its internal stress. The growth mechanism of pure ZnO nanorods and B-doped ZnO sheet-spheres was specifically investigated. The as-prepared BZO/PET–ITO heterojunction possessed obvious rectification properties and its positive turn-on voltage was 0.4?V. The carrier transport mechanisms involved three models such as hot carrier tunneling theory, tunneling recombination, and series-resistance effect were explored. The BZO/PET–ITO nanostructures were more effective than pure ZnO to degrade the RY 15, and the degradation rate reached 41.45%. The decomposition process with BZO nanostructure followed first-order reaction kinetics. The photocurrent and electrochemical impedance spectroscopy revealed that the B-doping could promote the separation of photo-generated electron-hole pairs, which was beneficial to enhance the photocatalytic activity. The photocurrent density of B-doped and pure ZnO/PET–ITO were 0.055?mA/cm2 and 0.016?mA/cm2, respectively. The photocatalytic mechanism of the sample was analyzed by the energy band theory.
机译:在PET-ITO柔性基材上使用90Ω℃的PET-ITO柔性基材上合成硼掺杂的氧化锌板球。 X射线衍射和X射线光电子谱的结果表明,B原子被成功掺杂到ZnO格中,B的掺入导致ZnO的晶格常数增加和其内部应力的变化。特别研究了纯ZnO纳米棒和B掺杂ZnO板球的生长机理。制备的BZO / PET-ITO异质结具有明显的整流性能,其正匝数电压为0.4〜v。载体传输机制涉及三种型号,如热载波隧道理论,隧道重组和串联电阻效应。 BZO / PET-ITO纳米结构比纯ZnO更有效,以降解RY 15,降解速率达到41.45%。具有BZO纳米结构的分解过程遵循一阶反应动力学。光电流和电化学阻抗光谱揭示了B掺杂可以促进光产生的电子孔对的分离,这有利于增强光催化活性。 B掺杂和纯ZnO / PET-ITO的光电流密度分别为0.055Ωma/ cm2和0.016?mA / cm 2。通过能带理论分析样品的光催化机制。

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