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首页> 外文期刊>Separation and Purification Technology >Scalable one-step template-free synthesis of ultralight edge-functionalized g-C3N4 nanosheets with enhanced visible light photocatalytic performance
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Scalable one-step template-free synthesis of ultralight edge-functionalized g-C3N4 nanosheets with enhanced visible light photocatalytic performance

机译:通过增强的可见光光催化性能,可扩展的一步式无限官能化G-C3N4纳米片的无人函数的G-C3N4纳米片

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摘要

Herein, we report a scalable, green and "bottom-up" approach for the synthesis of ultralight g-C3N4 nanosheets. The ultralight g-C3N4 nanosheets (9.6 mg cm(-3)) have been entirely synthesized in a wet atmosphere in one step without pretreatment or any other additives. The as-prepared material (UMCN-wet) appears as a foam-like exterior with ultrathin nanosheets (3.5 nm), short-order polymerization and sharp edges. The X-ray diffraction (XRD), Fourier transform infrared (FTIR) and X-ray photoelectron spectroscopy (XPS) analyses confirm the formation of melon units with edge-enriched active sites. UMCN-wet exhibits a higher specific surface area (137.44 m(2) g(-1)) and pore volume (0.2076 cm(3) g(-1)), compared with that of the as-synthesized materials in the air (MCN-air) and nitrogen (MCN-N-2) atmospheres. The optical and electrochemical analyses reveal that UMCN-wet manifests fast photogenerated charge separation and transfer with slow decay kinetics. As a result, UMCN-wet nanosheets exhibit superb photocatalytic degradation of rhodamine B (RhB), methylene blue (MB) and methyl orange (MO) under visible light irradiation with photodegradation rate constant (k) of 0.17687, 0.02409 and 0.00537 min(-1), respectively. Moreover, UMCN-wet exhibits excellent stability and reusability performance. Such a sustainable approach does not only overcome the prolonged time processing, extra energy consumption and utilization of hazardous chemicals for synthesis ultrathin g-C3N4 nanosheets, but also paves a new pathway for industrial upscale production with numerous expected environmental applications.
机译:在此,我们报告了一种可扩展的绿色和“自下而上”方法,用于综合超广岛G-C3N4纳米液。超轻G-C3N4纳米片(9.6mg cm(-3))在没有预处理的情况下在湿气氛中完全合成湿气氛或任何其他添加剂。制备的原料(UMCN湿)作为泡沫状外部,具有超薄纳米片(3.5nm),短阶聚合和尖锐边缘。 X射线衍射(XRD),傅里叶变换红外(FTIR)和X射线光电子光谱(XPS)分析确认了甜瓜单元的形成,具有边缘活性位点。 UMCN湿的表现出较高的比表面积(137.44m(2)g(-1))和孔体积(0.2076cm(3 )g(3)g(-1)),与空气中的合成材料( MCN-AIR)和氮气(MCN-N-2)大气压。光学和电化学分析表明,UMCN湿式表现出快速光发射的电荷分离和转移,缓慢衰减动力学。结果,在可见光照射下,具有0.17687,0.02409和0.00537 min( - 1)分别。此外,UMCN湿度表现出优异的稳定性和可重用性能。这种可持续的方法不仅克服了合成超薄的危险化学品的延长时间加工,额外的能量消耗和利用,而且铺设了具有许多预期环境应用的工业高档生产的新途径。

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