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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Design of (GO/TiO2)(N)one-dimensional photonic crystal photocatalysts with improved photocatalytic activity for tetracycline degradation
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Design of (GO/TiO2)(N)one-dimensional photonic crystal photocatalysts with improved photocatalytic activity for tetracycline degradation

机译:(GO / TiO2)(n)一维光子晶体光催化剂,具有改进的四环素降解的光催化活性

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(GO/TiO2)(N)(GO represents graphene oxide, andNrepresents the period number of alternate superposition of two dielectrics) one-dimensional photonic crystal with different lattice constants was prepared via the sol-gel technique, and its transmission characteristics for photocatalysis were tested. The results show that the lattice constant, filling ratio, number of periodic layers, and incident angle had effects on the band gap. When the lattice constant, filling ratio, number of periodic layers, and incident angle were set to 125 nm, 0.45, 21, and 0 degrees, respectively, a gap width of 53 nm appeared at the central wavelength (322 nm). The absorption peak of the photocatalyst at 357 nm overlapped the blue edge of the photonic band gap. A slow photon effect region above 96% reflectivity appeared. The degradation rate of tetracycline in (GO/TiO2)(N)photonic crystal was enhanced to 64% within 60 min. Meanwhile, the degradation efficiency of (GO/TiO2)(N)one-dimensional photonic crystal was effectively improved compared with those of the GO/TiO(2)composite film and GO/TiO(2)powder.
机译:(GO / TiO2)(N)(GO代表氧化铟烯,AndNrepresents通过溶胶 - 凝胶技术制备具有不同晶格常数的二维光子晶体的一维光子晶体,并将其用于光催化的传输特性测试。结果表明,晶格常数,填充率,周期层的数量和入射角对带隙具有影响。当晶格常数,填充率,周期性的数量和入射角分别设定为125nm,0.45,21和0度时,在中心波长(322nm)处出现53nm的间隙宽度。光催化剂的吸收峰在357nm处重叠了光子带隙的蓝色边缘。出现高于96%反射率的慢光学效应区域。 (GO / TiO 2)(N)光子晶体中的四环素的降解速率在60分钟内提高至64%。同时,与Go / TiO(2)复合膜和GO / TiO(2)粉末相比,(GO / TiO2)(n)一维光子晶体的降解效率有效提高。

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