Yunyun SHI, Junqi XU, Junhong SU. Optical, electrical and mechanical properties and applications of multicomponent composite films[J]. Journal of Applied Optics, 2020, 41(2): 405
- Journal of Applied Optics
- Vol. 41, Issue 2, 405 (2020)
![Surface morphology diagram of Cu/Al2O3 thin films under different oxidation times [8]](/richHtml/yygx/2020/41/2/405/img_1.jpg)
Fig. 1. Surface morphology diagram of Cu/Al2O3 thin films under different oxidation times [8]
![Chronocoulometric curves and charge Q vs.t1/2 i.e. Anson plot for TiO2 nanowire,MoO3 film and TiO2/MoO3 thin films[18]](/richHtml/yygx/2020/41/2/405/img_2.jpg)
Fig. 2. Chronocoulometric curves and charge Q vs.t 1/2 i.e. Anson plot for TiO2 nanowire,MoO3 film and TiO2/MoO3 thin films[18]
![Effect of scavengers on photodegradation rate of rhodamine B under simulated[55]](/Images/icon/loading.gif)
Fig. 3. Effect of scavengers on photodegradation rate of rhodamine B under simulated[55]
![Percentage removal of copper ion at various TEOS concentrations and various concentrations of copper feed solution testing[57]](/Images/icon/loading.gif)
Fig. 4. Percentage removal of copper ion at various TEOS concentrations and various concentrations of copper feed solution testing[57]
![Residual stress as a function of SiO2 content of mixed films[73]](/Images/icon/loading.gif)
Fig. 5. Residual stress as a function of SiO2 content of mixed films[73]
![Tensile strength versus percent loading of fibers before and after aging[82]](/Images/icon/loading.gif)
Fig. 6. Tensile strength versus percent loading of fibers before and after aging[82]
![Percent elongation versus percent loading of PET fibers before and after aging[82]](/Images/icon/loading.gif)
Fig. 7. Percent elongation versus percent loading of PET fibers before and after aging[82]
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Table 1. Young’s modulus and hardness of mixed film[73]

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