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使用聚乙烯亚胺作为软模板合成的五氧化二铌纳米棒/三脚催化剂的优越性能,用于在 UV 和可见光照射下消除亚甲基蓝。

Superior functionality of niobium pentoxide nano-rod/tripod photocatalyst synthesized using polyethyleneimine as a soft template for the abatement of methylene blue under UV and visible irradiation.

机构信息

Centre of Excellence in Green and Efficient Energy Technology, Central University of Jharkhand, Ranchi, Jharkhand, 835205, India.

Department of Energy Engineering, Central University of Jharkhand, Ranchi, Jharkhand, 835205, India.

出版信息

Environ Sci Pollut Res Int. 2023 Dec;30(58):122458-122469. doi: 10.1007/s11356-023-31001-w. Epub 2023 Nov 16.

Abstract

Polyethyleneimine (PEI) capping agent-cum-template-mediated synthesis of niobium oxide nanoparticles is reported to explore its impact on the resultant morphology, porosity, crystallinity, phase complexation, and thus on the photocatalytic activity. The resultant niobium oxides calcined at 800°C and 1000°C crystallized into highly ordered nano-rod/tripod nanostructure with inter-rod angle <120° having orthorhombic phase and heavily agglomerated rod-like nanostructures having monoclinic crystal phase, respectively. Contrary to the expectations, the nano-rod/tripods showed superior photocatalytic degradation kinetics and high adsorption of methylene blue dye in the hydrocolloid than formerly reported monoclinic nanoparticles. The best adsorption capability and photocatalytic activity are observed for the sample calcined at 800°C, resulting in a combined degradation efficiency of 98.8% of methylene blue dye. The adsorption characteristics, stability of the hydrocolloid system, the existence of oxygen vacancies, and the distinct morphology of the photocatalytic nano-rod/tripods are mainly responsible for this behavior. The process and the performance of unique nanostructure over others presents a superior alternative.

摘要

聚亚乙基亚胺(PEI)封端剂-模板介导合成氧化铌纳米粒子,探索其对所得形貌、孔隙率、结晶度、相复合的影响,从而影响光催化活性。在 800°C 和 1000°C 下煅烧的氧化铌分别结晶成高度有序的纳米棒/三脚纳米结构,棒间角度<120°,具有正交相,以及严重团聚的棒状纳米结构,具有单斜相。与预期相反,纳米棒/三脚结构在水凝胶中的光催化降解动力学和亚甲基蓝染料的高吸附性优于以前报道的单斜纳米粒子。在 800°C 下煅烧的样品表现出最佳的吸附能力和光催化活性,导致亚甲基蓝染料的综合降解效率达到 98.8%。这种行为主要归因于水凝胶体系的吸附特性、稳定性、氧空位的存在和独特的光催化纳米棒/三脚形貌。该过程和独特纳米结构的性能优于其他结构,提供了一种优越的替代方案。

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