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Synthesis of ZnTiO3@TiO2 Heterostructure Nanomaterial as a Visible light Photocatalyst

机译:Zntio3@TiO2异质结构纳米材料作为可见光光催化剂的合成

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Here ZnTiO3@TiO2 heterostructure nanomaterial was prepared through a simple sonochemical strategy using TiO2 (P25) with zinc nitrate as a precursor and then calcined the obtained sample at 700 °C in 2h for the photocatalytic degradation of Congo red dye solution. XRD result confirms that the diffraction patterns related to the ZnTiO3 and TiO2 as heterostructure with high purity. SEM confirms that particles are irregular in shape with high agglomeration and HRTEM reveals that ZnTiO3@TiO2 is highly crystalline with a lattice spacing of 0.37 nm. The calculated band gap of as-synthesized ZnTiO3@TiO2 hetero- structure nanomaterial is found to be 3.07 eV. The photo- catalytic degradation of as prepared ZnTiO3@TiO2 heterostruc- ture was investigated for the degradation of Congo red dye by varying the effect of catalyst amount and initial dye concen- tration. The ZnTiO3@TiO2 heterostructure nanomaterial exhib- ited 96% degradation efficiency of Congo red in 4h under visible light illumination. Moreover, the photodegradation mechanism of Congo red was studied with various scavengers such as EDTA, IPA, and Benzoquinone. Further, the detection of OH radicals during photocatalytic processes was confirmed by luminescence technique using terephthalic acid (TA) as a test molecule.
机译:在这里,Zntio3@TiO2异质结构纳米材料是通过使用TiO2(P25)的简单声化策略(P25)作为前体制备的,然后在2H中在2H中在700°C下凝固了所获得的样品,以用于刚果红色Dye溶液的光催化降解。 XRD结果证实,与Zntio3和TiO2相关的衍射模式是具有高纯度的异质结构。 SEM证实颗粒的形状不规则,较高的团聚性,HRTEM表明Zntio3@TiO2是高度结晶的,晶格间距为0.37 nm。 AS合成的Zntio3@TiO2异质结构纳米材料的计算带隙为3.07 eV。通过改变催化剂量和初始染料浓度的效果,研究了制备的Zntio3@Tio2杂质的光催化降解,以降解刚果红染料。 Zntio3@TiO2异质结构纳米材料在可见光照明下4H中刚果红的降解效率为96%。此外,刚果红的光降解机制是用EDTA,IPA和苯喹酮等各种清道夫研究的。此外,通过使用苯甲酸(TA)作为测试分子,通过发光技术证实了在光催化过程中OH自由基的检测。

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