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首页> 外文期刊>CrystEngComm >Large scale production of novel g-C3N4 micro strings with high surface area and versatile photodegradation ability
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Large scale production of novel g-C3N4 micro strings with high surface area and versatile photodegradation ability

机译:大规模生产具有高表面积和多功能光降解能力的新型g-C3N4微绳

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摘要

An easy, scalable and environmentally benign chemical method has been developed to synthesize micro strings of graphitic-C3N4 (msg-C3N4) through pre-treatment of melamine with HNO3 in alkaline solvent at low temperature. This methodology results in a unique string type morphology of msg-C3N4 with higher surface area. These msg-C3N4 micro strings were used as a photocatalyst under visible light for photodegradation of rhodamine B, methyl blue and methyl orange. The msg-C3N4 shows enhanced photodegradation efficiency due to its high surface area and favourable bandgap. The first order rate constant for msg-C3N4 was measured which confirms the higher performance of msg-C3N4 in comparison to other reported materials such as g-C3N4, Fe2O3/g-C3N4 and TiO2 nanotubes. Thus, the method developed here is favourable for the synthesis of materials with higher surface area and unique morphology, which are favourable for high photodegradation activity.
机译:已经开发了一种简单,可扩展且对环境无害的化学方法,可通过在碱性溶剂中在低温下用HNO3对三聚氰胺进行预处理来合成石墨化C3N4(msg-C3N4)的微细串。这种方法导致味精-C3N4具有较高表面积的独特字符串类型形态。这些msg-C3N4细绳在可见光下用作光催化剂,用于罗丹明B,甲基蓝和甲基橙的光降解。 msg-C3N4由于其高表面积和良好的带隙而显示出增强的光降解效率。测量了味精-C3N4的一级速率常数,这证实了味精-C3N4的性能优于其他报道的材料,例如g-C3N4,Fe2O3 / g-C3N4和TiO2纳米管。因此,这里开发的方法有利于合成具有较高表面积和独特形态的材料,这有利于高光降解活性。

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