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Fabrication of highly efficient resonant structure assisted ultrathin artificially stacked Ag/ZnS/Ag multilayer films for color filter applications

机译:制造用于滤色器应用的高效共振结构辅助的超薄人工堆叠ag / Zns / ag多层膜

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摘要

We introduce a novel strategy for the fabrication of mechanically and thermally stable highly efficient resonant structure assisted ultrathin artificially stacked Ag/ZnS/Ag multilayer films on cleaned glass substrates using the thermal evaporation technique. The application of fabricated color filters has been studied in the visible range. These multilayers have good adhesion to each other and to the glass substrate, resulting in mechanical and thermal stability. The stability has been examined by the "Scotch-tape'' test and the ultrasonication process at 37 kHz frequency and at 40 degrees C temperature as well as by thermogravimetric analysis (TGA). The results of the structural analysis, surface morphology and atomic force microscopy of these filters confirm the good crystallinity with a low value of surface roughness. The effect of thickness of artificially stacked metal (Ag) and dielectric (ZnS) layers has been examined in terms of optical properties by several spectroscopic techniques. These ingenious filters exhibit a large and deep stop band in the visible wavelength region. Thus blue, green and red color filters, centered at 460, 540 and 620 nm having bandwidths of about 25, 44 and 35 nm, respectively, were achieved. Moreover, the statistical outcomes of all the three filters (blue, green and red) show that the peak transmission efficiencies are consistently 73%, 70% and 63%, respectively. Additionally, the effect of different angles of incidence on the transmittance spectra has also been presented. Hence, the obtained results strongly suggest that these filters can be potentially used for tuning the color of optical filters according to the desired applications.ud
机译:我们介绍了一种新颖的策略,用于利用热蒸发技术在清洁的玻璃基板上制造机械和热稳定的高效共振结构辅助超薄人工堆叠的Ag / ZnS / Ag多层薄膜。已在可见光范围内研究了制成的彩色滤光片的应用。这些多层彼此之间以及与玻璃基板具有良好的粘合性,从而导致机械和热稳定性。通过“ Scotch-Tape”测试和在37 kHz频率和40摄氏度温度下的超声处理以及热重分析(TGA)来检查稳定性,并进行结构分析,表面形态和原子力分析。这些滤光镜的显微镜检查证实了良好的结晶度和较低的表面粗糙度值,已通过多种光谱技术研究了人工堆叠的金属(Ag)和电介质(ZnS)层的厚度对光学性能的影响,这些巧妙的滤光镜表现出在可见光波长区域有一个较大的深阻带,从而获得了分别位于460、540和620 nm中心,带宽分别约为25、44和35 nm的蓝色,绿色和红色滤色镜。所有三个滤波器(蓝色,绿色和红色)的峰值传输效率分别一致地分别为73%,70%和63%。还介绍了透射光谱上的入射。因此,获得的结果强烈表明,根据所需的应用,这些滤光片可潜在地用于调整滤光片的颜色。

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