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Synthesis of g-C3N4 at different temperatures for superior visible/UV photocatalytic performance and photoelectrochemical sensing of MB solution

机译:在不同温度下合成g-C3N4具有优异的可见/紫外光催化性能和MB溶液的光电化学传感

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摘要

In this paper, a simple preparation method was utilized to study for the optimum calcination temperature of graphitic carbon nitride (g-C3N4). The g-C3N4 prepared at different temperatures were characterized by X-ray diffraction (XRD), UV-vis diffuse reflectance spectroscopy (DRS) and so on. The results demonstrated that g-C3N4 could not be formed fully until the calcination temperature was higher than 500 degrees C. From DRS and photoluminescence (PL) spectrum, a red shift of absorption peaks with increasing calcination temperatures was found. This could enhance the visible light absorption, and then the photocatalytic activity would be improved. The photocatalytic activity was evaluated via the photodegradation of methylene blue (MB) and 4-chlorophenol (4-CP), respectively. Moreover, due to the gradual decrement trend of photocurrent intensity with addition of MB, g-C3N4 prepared at 650 degrees C could be used as a photoelectrochemical sensor to detect the existence of MB and estimate the concentration of MB. Hence g-C3N4 will become a promising candidate for photoelectrochemical applications.
机译:本文采用一种简单的制备方法来研究石墨氮化碳(g-C3N4)的最佳煅烧温度。通过X射线衍射(XRD),紫外可见漫反射光谱(DRS)等对在不同温度下制备的g-C3N4进行了表征。结果表明,直到煅烧温度高于500摄氏度,才能完全形成g-C3N4。从DRS和光致发光(PL)光谱中,发现随着煅烧温度的升高吸收峰出现红移。这可以增强可见光的吸收,然后可以提高光催化活性。分别通过亚甲基蓝(MB)和4-氯苯酚(4-CP)的光降解来评估光催化活性。而且,由于光电流强度随着添加MB而逐渐下降的趋势,在650℃下制备的g-C3N4可以用作光电化学传感器以检测MB的存在并估计MB的浓度。因此,g-C3N4将成为光电化学应用的有希望的候选者。

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