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NaBiS2 as a Novel Indirect Bandgap Full Spectrum Photocatalyst: Synthesis and Application

机译:NABIS2作为一种新型间接带隙全谱光催化剂:合成和应用

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摘要

Photocatalysts with a superior activity range, from ultraviolet (UV) to near-infrared (NIR) light, are attractive for solar utilization. From this perspective, sulfides are promising due to their narrower bandgap than oxides. In this report, NaBiS2 was synthesized hydrothermally under mild conditions by adjusting the alkaline amount. The rough NaBiS2 nanosheets possessed various surface atomic configurations on their surfaces, including amorphous clusters and amorphous nano-domains, revealed by HRTEM. A theoretical investigation of the band structure employing the density functional theory (DFT) method for the first time indicated that NaBiS2 is an indirect bandgap semiconductor with a narrow bandgap of 1.02 eV. Experimentally, it showed excellent photocatalytic activity for the degradation of methyl blue under UV, visible light and NIR light due to its experimental bandgap width of 1.32 eV. A degradation rate of 99.6% was reached after 80 min under full spectrum irradiation.
机译:具有优异的活动范围的光催化剂,从紫外线(UV)到近红外(NIR)光,对太阳能利用具有吸引力。从这种角度来看,由于其较窄的带隙而不是氧化物,硫化物是有前途的。在本报告中,通过调节碱性量,在温和条件下,NaBis2在温和条件下合成。粗糙的Nabis2纳米蛋白酶在其表面上具有各种表面原子构造,包括由HRTEM揭示的非晶簇和无定形纳米域。第一次采用密度泛函理论(DFT)方法的频带结构的理论研究表明,Nabis2是具有1.02eV的窄带隙的间接带隙半导体。通过实验,由于其实验带隙宽度为1.32eV,它显示出优异的光催化活性,用于紫外,可见光和NIR光下的甲基蓝色,可见光和鼻炎。在全谱辐射下80分钟后达到了99.6%的降解速率。

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