首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Fabrication of one-dimensional alumina photonic crystals with a narrow band gap and their application to high-sensitivity sensors
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Fabrication of one-dimensional alumina photonic crystals with a narrow band gap and their application to high-sensitivity sensors

机译:带隙窄的一维氧化铝光子晶体的制备及其在高灵敏度传感器中的应用

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In this study, alumina photonic crystals (PCs) were fabricated by applying a sine-wave current in the anodization of aluminum. The effect of periodic time and peak-peak value of the current on the photonic band gap (PBG) were discussed. By selecting the appropriate experimental conditions, a full-width at half maximum (FWHM) of the PBG of only 18 nm was achieved. The experimental results show that the central position of the PBG was proportional to the periodic time of the current signal in the anodization process. A short periodic time allowed the formation of alumina PCs with a narrow band gap. By changing the peak-peak value of the current, the position of the PBG with a narrow FWHM could also be tuned artificially. The as-prepared alumina PCs showed a linear shift of PBG position and transmittance with the increase of refractive index of the analytes infiltrated into the pores, indicating their potential application in chemical sensing or bio-sensing.
机译:在这项研究中,通过在铝的阳极氧化过程中施加正弦波电流来制造氧化铝光子晶体(PC)。讨论了电流的周期性时间和峰值对光子带隙(PBG)的影响。通过选择适当的实验条件,PBG的半峰全宽(FWHM)仅达到18 nm。实验结果表明,在阳极氧化过程中,PBG的中心位置与电流信号的周期时间成比例。较短的周期性时间允许形成具有窄带隙的氧化铝PC。通过更改电流的峰峰值,还可以人为地调整具有窄FWHM的PBG的位置。所制备的氧化铝PC随着渗透到孔隙中的分析物的折射率的增加,其PBG位置和透射率呈线性变化,表明它们在化学传感或生物传感中的潜在应用。

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