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首页> 外文期刊>Applied Surface Science >Rational design of novel 3D flower-like praseodymium molybdate anchored graphitic carbon Nitride: An efficient and sustainable photocatalyst for mitigation of carcinogenic pollutants
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Rational design of novel 3D flower-like praseodymium molybdate anchored graphitic carbon Nitride: An efficient and sustainable photocatalyst for mitigation of carcinogenic pollutants

机译:新型3D花样镨的理性设计钼酸盐锚定石墨碳氮化物:一种致癌污染物减缓的有效和可持续的光催化剂

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The rational design of heterostructured praseodymium molybdate@polymeric graphitic carbon nitride (Pr6MoO12@g-C3N4) was effectively designed by a new chemical strategy in a hydrothermal environment and followed by an ultrasound-assisted route. The features of the as-fabricated Pr6MoO12@g-C3N4 nanocomposite was broadly investigated by various standard characterization techniques like p-XRD,SEM, TEM, XPS, BET, PL, UV-DRS. The fabricated photocatalyst was demonstrated that high crystallinity and crystalline size was 46.7 nm. Furthermore, the 50 mg catalyst and 5 ppm (mg/L) of pollutant concentration were optimized conditions for the highest photocatalytic decomposition results. Interestingly, the Pr6MoO12@g-C3N4 composite synergistic photocatalytic abilities via excellent reusable stability towards the degradation of ciprofloxacin (CIP) and methyl parathion (MPT) as removal of aquatic pollutants. More distinctively, the Pr6MoO12@g-C3N4 nanocomposite was deliberate in the decolouration rate of CIP and MPT under visible light radiation: 98 % CIP and 97 % of MPT degradation in just 70 and 40 min respectively. A plausible charge separation/transfer pathway where redox species experiments implicate center dot OH is the most essential role while h + and O2 center dot- contributed to a lesser extent in the catalytic process. This research work presented a versatile nature of the Pr6MoO12@g-C3N4 heterostructured material for energy harvesting and application in environmental crises.
机译:通过水热环境中的新化学策略有效地设计了异质结构镨钼酸盐@聚合物石墨碳氮化物(PR6MOO12 @ G-C3N4)的理性设计,并进行了超声辅助途径。通过P-XRD,SEM,TEM,XPS,BET,PL,UV-DRS,通过各种标准表征技术广泛研究了AS制造的PR6MOO12 @ G-C3N4纳米复合材料的特征。证明了制造的光催化剂高结晶度和结晶尺寸为46.7nm。此外,50mg催化剂和5ppm(mg / L)的污染物浓度是最高光催化分解结果的优化条件。有趣的是,PR6MOO12 @ G-C3N4通过朝着除去水生污染物的去除,通过优异的可再利用稳定性来达到环丙沙星(CIP)和甲基硫醇(MPT)的降解。更明显,PR6Moo12 @ G-C3N4纳米复合材料在可见光辐射下的CIP和MPT的脱色速率下进行刻意:98%CIP和97%的MPT降解分别为70和40分钟。合理的电荷分离/转移途径,其中氧化还原物种实验牵引中心点OH是最重要的作用,而H +和O2中心点 - 在催化过程中的较小程度上有助于较小的作用。本研究工作呈现了PR6Moo12 @ G-C3N4异质结构材料的多功能性质,用于在环境危机中的能量收集和应用。

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