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首页> 外文期刊>ACS catalysis >Rapid and Complete Removal of Nonylphenol by Gold Nanoparticle/ Rutile Titanium(IV) Oxide Plasmon Photocatalyst
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Rapid and Complete Removal of Nonylphenol by Gold Nanoparticle/ Rutile Titanium(IV) Oxide Plasmon Photocatalyst

机译:金纳米粒子/金红石型氧化钛等离子等离子体光催化剂快速彻底去除壬基酚

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摘要

Nonylphenol is a harmful endocrine disruptor, and the concentration in ambient water should be restricted below 0.1 μM. We show that visible-light irradiation of gold nanoparticle (NP)-loaded rutile TiO2 (Au/rutile TiO2) plasmon photocatalyst leads to rapid and complete removal of nonylphenol from its dilute aqueous solution with the degradation. Au/rutile TiO2 exhibits much higher visible-light activity than Au/anatase TiO2 and BiVO4. Based on the results of the adsorption and Fourier-transformed infrared spectroscopic measure- ments, we present a unique reaction scheme consisting of a series of events, the fast oxidative adsorption and concentration of nonylphenol on the Au NP surface, the successive efficient oxidation induced by the localized surface plasmon resonance excitation-driven interfacial electron transfer from Au NP to rutile TiO2, and the regeneration of the adsorption sites by the surface transport of the intermediates from Au to TiO2.
机译:壬基酚是有害的内分泌干扰物,环境水中的浓度应限制在0.1μM以下。我们显示可见光照射的金纳米粒子(NP)负载金红石TiO2(Au /金红石TiO2)等离子体激元光催化剂可导致壬基酚从其稀水溶液中快速,完全去除并降解。金/金红石TiO2的可见光活性比金/锐钛矿TiO2和BiVO4高得多。根据吸附和傅立叶变换红外光谱测量的结果,我们提出了一个独特的反应方案,该方案包括一系列事件,包括快速氧化吸附和壬基酚在金纳米颗粒表面的浓缩,以及连续的有效氧化。局部表面等离子体激元共振激发驱动的界面电子从金纳米颗粒向金红石型TiO2的转移,以及通过中间物从金向TiO2的表面迁移而产生的吸附位的再生。

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