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Synthesis, characterization, and performance evaluation of multilayered photoanodes by introducing mesoporous carbon and TiO2 for humic acid adsorption

机译:通过引入介孔碳和TiO2吸附腐植酸来制备多层光阳极的合成,表征和性能评价

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摘要

Nanostructured photoanodes were prepared via a novel combination of titanium dioxide (TiO2) nanoparticles and mesoporous carbon (C). Four different photoanodes were synthesized by sol–gel spin coating onto a glassy substrate of fluorine-doped tin oxide. The photocatalytic activities of TiO2, TiO2/C/TiO2, TiO2/C/C/TiO2, and TiO2/C/TiO2/C/TiO2 photoanodes were evaluated by exposing the synthesized photoanodes to UV–visible light. The photocurrent density observed in these photoanodes confirmed that an additional layer of mesoporous carbon could successfully increase the photocurrent density. The highest photocurrent density of ~1.022 mA cm−2 at 1 V/saturated calomel electrode was achieved with TiO2/C/C/TiO2 under an illumination intensity of 100 mW cm−2 from a solar simulator. The highest value of surface roughness was measured for a TiO2/C/C/TiO2 combination owing to the presence of two continuous layers of mesoporous carbon. The resulting films had a thickness ranging from 1.605 µm to 5.165 µm after the calcination process. The presence of double-layer mesoporous carbon resulted in a 20% increase in the photocurrent density compared with the TiO2/C/TiO2 combination when only a single mesoporous carbon layer was employed. The improved performance of these photoanodes can be attributed to the enhanced porosity and increased void space due to the presence of mesoporous carbon. For the first time, it has been demonstrated here that the photoelectrochemical performance of TiO2 can be improved by integrating several layers of mesoporous carbon. Comparison of the rate of removal of humic acid by the prepared photoanodes showed that the highest performance from TiO2/C/C/TiO2 was due to the highest photocurrent density generated. Therefore, this study showed that optimizing the sequence of mesoporous carbon layers can be a viable and inexpensive method for enhanced humic acid removal.
机译:纳米结构的光阳极是通过二氧化钛(TiO2)纳米粒子和中孔碳(C)的新型组合制备的。通过溶胶-凝胶旋涂在掺氟氧化锡的玻璃状基材上合成了四种不同的光阳极。通过将合成的光阳极暴露于紫外可见光下,评估了TiO2,TiO2 / C / TiO2,TiO2 / C / C / TiO2和TiO2 / C / TiO2 / C / TiO2光阳极的光催化活性。在这些光阳极中观察到的光电流密度证实,额外的中孔碳层可以成功地增加光电流密度。 TiO2 / C / C / TiO2在100 mW cm −2的光照强度下,在1 V /饱和甘汞电极下,在1 V /饱和甘汞电极上获得的最高光电流密度为〜1.022 mA cm −2 来自太阳模拟器。由于存在两个连续的介孔碳连续层,因此测量了TiO2 / C / C / TiO2组合的最高表面粗糙度。在煅烧过程之后,所得膜的厚度为1.605μm至5.165μm。当仅使用单个中孔碳层时,与TiO2 / C / TiO2组合相比,双层中孔碳的存在导致光电流密度增加20%。这些光阳极的性能改善可归因于中孔碳的存在,从而提高了孔隙率并增加了空隙空间。在此首次证明,通过集成几层中孔碳可以提高TiO2的光电化学性能。制备的光阳极对腐殖酸的去除率的比较表明,TiO 2 / C / C / C / TiO / sub <2> sub> sub> sub> sub> sub> sub> sub> sub> sub> sub> sub> sub> sub> sub> sub> sub> sub 。因此,这项研究表明,优化中孔碳层的序列可以是一种可行的且廉价的方法,以提高腐殖酸的去除率。

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