负载银纳米颗粒的氧化钛薄膜的合成与表征

S. Balogun, Afolabi Bola Abdulhamid, Y. K. Sanusi, A. Oluwaseun
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引用次数: 7

摘要

本研究采用自旋镀膜技术,研究了退火温度对二氧化钛载银纳米粒子(TiO2: AgNPs)薄膜光学性能的影响。以laguminose - paionodeae提取物为还原剂,用市售的氧化钛(iv)制备了纳米银。在不同的体积比下沉积TiO2:AgNPs共混溶液。混合溶液体积比为(1:0.2),以不同转速/分钟(rpm)沉积7种不同厚度,沉积时间为30秒。将16个样品以1000 rpm的速度沉积在玻璃基板上,在50°C至425°C的温度范围内(间隔10°C)在管状炉中进行退火。结果表明,在波长光谱可见范围内,光子能量的吸收峰出现在375℃。TiO2:AgNPs共混层的最佳吸光度峰厚度出现在可见光谱的115 nm处,对应的自旋速度为1000 rpm。优化后的制备工艺为共混层厚度为115 nm,在375°C的可见光谱退火温度下吸光度最佳。当体积比为(1:0.2)时,吸收峰为0.75 μ u。在375℃时,共混薄膜的带隙能为3.58 eV。结果表明,纳米银可以增强氧化钛膜的光吸收,拓宽吸收光谱范围,提高氧化钛膜的热稳定性。因此,这些结果可以作为改进有机太阳能电池设计和制造的指导方针。
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Synthesis and Characterization of Titanium (iv) Oxide Loaded with Silver Nano Particles Thin Films
This research investigates effect of annealing temperature on the optical properties of titanium dioxide loaded with silver nanoparticles (TiO2: AgNPs) thin films deposited on glass substrate by spin–coating technique. Silver nanoparticles was prepared using laguminosae-paplionodeae extracts as a reducing agent for silver nitrate and commercially available titanium (iv) oxide was used. Deposition of TiO2:AgNPs blend solution was done in different volume ratio. The blend solution volume ratio of (1:0.2) was deposited at 7 different thicknesses with different speed of revolution per minutes (rpm) for 30 seconds. Annealing of 16 samples deposited at 1000 rpm on the glass substrate was carried out at temperature range of 50°C to 425°C with 10°C interval in a tubular furnance. It is observed from the results that the peak absorption of photon energy occurred at 375°C in the visible range of the wavelength spectrum. Optimal thickness for peak absorbance of the TiO2:AgNPs blend layer occurred at 115 nm in the visible spectrum and at the corresponding spin speed of 1000  rpm. Optimized fabrication process with blend layer thickness of 115 nm yielded the best absorbance at annealed temperature of 375°C in the visible spectrum. The volume ratio of (1:0.2) gave the peak absorption at 0.75 a u. The band gap energy of the blend thin film is 3.58 eV at 375°C in the visible range of wavelength spectrum. It is revealed from the result that the light absorption, broadened absorption spectral range and thermal stability of titanium (iv) oxide film could be enhanced using silver nanoparticles. The results can be therefore used as a guideline for improving the design and fabrication of organic solar cells.
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