Synergetic and charge transfer properties of a metal oxide heterojunction: Photocatalytic activities

Buzuayehu Abebe
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引用次数: 1

Abstract

Improvement in the synthesis techniques and their optimum properties to be up-to-date is the global need for industrially scalable applications. The sol–gel solution combustion synthesis (SG-SCS) approach is an easy, time-/energy-efficient, and creates regularly ordered porous materials that have significance in the ion-/mass-transport phenomenon. Furthermore, the approach also yields a decent heterojunction once optimized via the HSAB theory. Forming a heterojunction also tunes the crucial properties of the materials, thus, boosting the photocatalytic ability through charge transfer or/and synergistic roles. From the stability investigation results, the calcination temperature of 500°C is determined to be ideal. The X-ray diffraction and high-resolution transmission electron microscopy (HRTEM) techniques confirmed the nanoscale size of the NPs and NCs. The porous nature of the materials is revealed from the scanning electron microscopy micrographs and BET analysis; consistent results are also noted from selected area electron diffraction and HRTEM. The detected stacking faults on the IFFT image of HRTEM also confirmed the porous properties of the NCs. The precise elemental composition and local heterojunction within Zn/Fe(III)/Mn(III) oxides were confirmed in the HRTEM, X-ray photoelectron spectroscopy, and energy-dispersive X-ray studies. The significant charge transfer capability of the NCs more than bare ZnO was evidenced from the electrochemical analysis. The NCs were also effective on acid orange 8 (AO8) and Congo red (CR) dye degradations.
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金属氧化物异质结的协同和电荷转移特性:光催化活性
合成技术的改进及其最佳性能是最新的,这是全球对工业可扩展应用的需求。溶胶-凝胶溶液燃烧合成(SG-SCS)方法是一种简单、省时/节能的方法,可以产生在离子/质量传输现象中具有重要意义的规则有序多孔材料。此外,一旦通过HSAB理论进行优化,该方法还产生了良好的异质结。形成异质结还调节了材料的关键性能,从而通过电荷转移或/和协同作用提高了光催化能力。根据稳定性研究结果,确定500°C的煅烧温度是理想的。X射线衍射和高分辨率透射电子显微镜(HRTEM)技术证实了纳米颗粒和纳米晶体的纳米尺寸。扫描电子显微镜显微照片和BET分析揭示了材料的多孔性;从选区电子衍射和HRTEM也注意到了一致的结果。在HRTEM的IFFT图像上检测到的层错也证实了NCs的多孔性质。在HRTEM、X射线光电子能谱和能量色散X射线研究中证实了Zn/Fe(III)/Mn(III)氧化物中精确的元素组成和局部异质结。电化学分析证明了NCs比裸ZnO具有显著的电荷转移能力。NCs对酸性橙8(AO8)和刚果红(CR)染料的降解也很有效。
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