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Photocatalysis enhancement of Au/BFO nanoparticles using plasmon resonance of Au NPs

机译:利用金纳米粒子的等离子体共振增强Au / BFO纳米粒子的光催化作用

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BiFeO3 (BFO) nanoparticles was synthesized via sol-gel technique, and successfully loaded with small sizes of gold nanoparticles (Au NPs) by impregnation-reduction method to extremely enhance the BFO photocatalytic activity. The obviously stronger optical absorption of Au/BFO observed from the UV-vis diffuse reflectance spectrum confirmed that the surface plasmon resonance (SPR) effect occured on the surface of Au NPs. And the surface plasmon-induced localized electric field could allow the formation of electron/hole pairs in the near surface region of BFO which can migrate to the surface without undergoing electron/hole (e(-)/h(+)) pair recombination. The more electrons and holes formed, the more .OH will be generated to decompose the CR solution. When the gold loading in Au/BFO nanoparticles is 3.36 wt%, the obtained Au/BFO catalyst exhibits best photocatalytic activity evaluated by photocatalysis degradation of Congo red (CR) solution under the visible light irradiation. (C) 2015 Elsevier B.V. All rights reserved.
机译:通过溶胶-凝胶技术合成了BiFeO3(BFO)纳米粒子,并通过浸渍-还原法成功负载了小尺寸的金纳米粒子(Au NPs),极大地增强了BFO的光催化活性。从紫外可见漫反射光谱观察到的Au / BFO明显更强的光吸收,证实了在Au NPs的表面上发生了表面等离子体激元共振(SPR)效应。并且表面等离子体激元诱导的局部电场可以允许在BFO的近表面区域中形成电子/空穴对,该电子/空穴对可以迁移到表面而无需经历电子/空穴(e(-)/ h(+))对的重组。形成的电子和空穴越多,将产生更多的.OH来分解CR溶液。当Au / BFO纳米颗粒中的金负载量为3.36重量%时,通过在可见光照射下刚果红(CR)溶液的光催化降解来评价所获得的Au / BFO催化剂表现出最佳的光催化活性。 (C)2015 Elsevier B.V.保留所有权利。

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