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Multi-layered graphene quantum dots derived photodegradation mechanism of methylene blue

机译:多层石墨烯量子点衍生的亚甲基蓝光降解机理

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摘要

The photocatalytic degradation of methylene blue (MB) under visible light in the presence of a multi-layered graphene quantum dots (MLGQDs) photocatalyst has been investigated in aqueous heterogeneous solution. The photodegradation mechanism, following pseudo first order kinetics, was examined for the effects of the existing monomer (MB+)-dimer {(MB+)(2)} equilibrium in MB solution. The photocatalytic degradation efficiency of MB+ achieved 93.3% with a rate constant (k) of 0.056 min(-1) after 60 min irradiation with green light, while less degradation similar to 89.44% with k similar to 0.024 min(-1), was achieved for (MB+)(2). MB+ is perhaps a short-lived species and favors the photodegradation of MB in comparison to the (MB+)(2) species. Similar trends have been found under blue light irradiation. MB+ species easily pulls a proton from the functional groups of MLGQDs, resulting in an intermediate product Luco-methylene blue (LMB). Finally, all MB species and intermediate products degrade into an environmental benign product via highly reactive OH radicals. In addition, our ab initio theoretical results reveals that monomers abstract a proton from hydroxyl groups of MLGQDs and formation of LMB takes place, which is weakly bonded with MLGQDs by hydrogen bonds.
机译:研究了在非均相水溶液中多层石墨烯量子点(MLGQDs)光催化剂存在下在可见光下亚甲基蓝(MB)的光催化降解。按照伪一级反应动力学,研究了光降解机理对MB溶液中现有单体(MB +)-二聚体{(MB +)(2)}平衡的影响。绿光照射60分钟后,MB +的光催化降解效率达到93.3%,速率常数(k)为0.056 min(-1),而k近似于0.024 min(-1)的降解率较小,为89.44%。 (MB +)(2)达到了。 MB +可能是短命的物种,与(MB +)(2)物种相比,它有利于MB的光降解。在蓝光照射下也发现了类似的趋势。 MB +物种很容易从MLGQDs的官能团中抽出质子,形成中间产物卢克-亚甲基蓝(LMB)。最后,所有MB物质和中间产物都通过高反应性OH自由基降解为环境友好的产物。此外,我们的从头开始的理论结果表明,单体从MLGQD的羟基中提取出一个质子,并发生了LMB的形成,该分子通过氢键与MLGQD弱结合。

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