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Crystalline carbon nitride for photocatalytic phenol degradation: Effect of precursor and salt melt amounts

机译:用于光催化酚脱氮的结晶碳氮化合物:前体和盐熔体量的作用

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Development of visible-light-active photocatalyst is an important approach to utilize solar energy in the future. The attempts to improve the crystallinity of photocatalyst have been the focus of the research. Recently, the use of potassium chloride-lithium chloride (KCl-LiCl) salt melt has been reported to increase the crystallinity of carbon nitride. In this work, precursor and salt melt amounts were varied to study the properties and the photocatalytic activity of the crystalline carbon nitride for phenol degradation. When the precursor amount was too low (1 g), no product was obtained due to the decomposition of precursor. When it was too high (4 g), the product showed the characters of amorphous CN. Optical properties also showed that when the precursor amount was 3-4 g, the incomplete condensation process occurred and defects were formed due to the excessive washing. The specific surface area also decreased with the increase of the precursor amount from 2 to 4. When the amount of salt melt was too low (2.5 g), the crystalline CN could not be obtained. However, when the amount of salt melt was increased to 7.5 g, impurities could not be avoided. Longer time and multiple washing processes were required in order to remove the impurities, which certainly affected the crystallinity. Photocatalytic activity test showed that the high activity was obtained on the sample prepared using the optimum amount of precursor (2 g) and salt melt (5 g), which would be due to the high crystallinity and large specific surface area.
机译:可见光活性光催化剂的发展是利用未来太阳能的重要方法。改善光催化剂结晶度的尝试是研究的重点。最近,据报道,使用氯化钾 - 氯化钾(KCl-LICL)盐熔融以增加氮化物的结晶度。在该作品中,改变前体和盐熔融量以研究结晶碳氮化合物的性质和光催化活性用于酚脱氮。当前体量太低(1g)时,由于前体的分解而没有获得产物。当它太高(4克)时,该产品显示了无定形CN的特征。光学性质还表明,当前体量为3-4g时,发生不完全的缩合过程并且由于过量洗涤而形成缺陷。当盐熔融量太低(2.5g)时,比表面积也随着前体量的增加而降低,不能获得结晶Cn。然而,当盐熔体的量增加至7.5g时,不能避免杂质。需要更长的时间和多次洗涤过程以除去肯定影响结晶度的杂质。光催化活性试验表明,在使用最佳前体(2g)和盐熔(5g)制备的样品上获得高活性,这将是由于高结晶度和大的比表面积。

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