异质结
材料科学
光电流
光电子学
三元运算
光催化
罗丹明B
欧姆接触
半导体
表面等离子共振
图层(电子)
纳米技术
纳米颗粒
催化作用
计算机科学
生物化学
化学
程序设计语言
作者
Kevin V. Alex,José Silva,Koppole Kamakshi,K. C. Sekhar
标识
DOI:10.1002/admi.202201948
摘要
Abstract This work shows the fabrication of an efficient ternary heterostructure photocatalyst by integrating ferroelectric BaTiO 3 (BTO) as the bottom layer, semiconductor MoO 3 as the middle layer and plasmonic silver nanoparticles (Ag NPs) as the top layer, respectively. The BaTiO 3 /MoO 3 /Ag (BMA) heterostructure exhibits a higher photodegradation and photocatalytic efficiency of 100% for rhodamine B (RhB) dye under a UV–Visible light illumination of 60 min when compared with its binary heterostructure counterparts BaTiO 3 /Ag (BA) and MoO 3 /Ag (MA). The increased photocatalytic activity in BMA heterostructure is attributed to its enhanced interfacial electric field due to the electric double layer formation at BTO‐MoO 3 and MoO 3 ‐Ag interfaces. The higher blueshift in the surface plasmon resonance (SPR) peak observed for the BMA heterostructure clearly indicates an increased electron transfer toward the top Ag NPs layer under optical illumination. The higher resistive switching (RS) ratio, the increased difference in voltage minima, and the improved photocurrent generation, as evident from the I – V characteristics, illustrate the enhanced charge carrier generation and separation in BMA heterostructure. A smaller arc radius observed for the Nyquist plot of BMA heterostructure clearly showcases its increased interfacial charge transfer (CT). The CT mechanism and reusability of the BMA heterostructure are also studied.
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