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Physical Mixing Of N-Doped Grapheme Quantum Dots Functionalized TiO2 For Sustainable Degradation Of Methylene Blue

机译:N掺杂石墨料量子点的物理混合官能化TiO2用于亚甲基的可持续降解

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An in-situ physical assisted mixing was applied for uniform incorporation of N-doped graphene quantum dots(N-GQDs)with TiO2 nanoparticles to construct N-GDQs/TiO2.The unique characteristics of N-doped graphene quantum dots enable it to act as a rich optical light harvesting.The strong absorption under the UV-Vis spectroscopy shows the efficacy in absorbing visible and Near Infrared(NIR)photon.The photocatalysis of the synthesized composite was evaluated through the efficiency of photodegradation of Methylene Blue in aqueous solution under direct sunlight irradiation.A complete degradation was achieved within 150 mins for 1.5% N-GQDs/TiO2 composite as compare to pure.The vast improvement of this photocatalysis efficiency is much attributed to the strong light absorbance in the entire solar spectrum.Hence,the formation of N-GQDs/TiO2 could be broadly used as future sustainable photocatalyst for treating various organic pollutants in the field of aquatic environmental remediation.
机译:施用原位物理辅助混合以均匀地掺入N掺杂的石墨烯量子点(N-GQDS)与TiO2纳米颗粒以构建N-GDQs / TiO2。n掺杂石墨烯量子点的独特特性使其能够充当富光学光的光学光学光。UV-Vis光谱下的强吸收显示了吸收可见光和近红外(NIR)光子的功效。通过直接的水溶液中亚甲基蓝色的光降解的效率来评价合成复合材料的光催化。阳光照射。在150分钟内实现完全的降解,为1.5%N-GQDS / TiO2复合材料,如纯度相比。这种光催化效率的大幅提高归因于整个太阳频谱中的强光吸光度。因此,形成在N-GQDS / TiO2中可以广泛地用作治疗水生环境修复领域的各种有机污染物的未来可持续光催化剂。

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