首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Construction and characterization of visible light active Pd nano-crystallite decorated and C-N-S-co-doped TiO2 nanosheet array photoelectrode for enhanced photocatalytic degradation of acetylsalicylic acid
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Construction and characterization of visible light active Pd nano-crystallite decorated and C-N-S-co-doped TiO2 nanosheet array photoelectrode for enhanced photocatalytic degradation of acetylsalicylic acid

机译:可见光活性Pd纳米微晶修饰和C-N-S-共掺杂TiO2纳米片阵列光电极的构建和表征,用于增强乙酰水杨酸的光催化降解

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A photo-assisted deposition technique was adopted to construct highly dispersed Pd nano-crystallites on C-N-S-co-doped TiO2 nanosheets (Pd/C-N-S-TiO2 NS) arrays photoelectrodes prepared by one-step hydrothermal synthesis. The morphology, elemental composition, crystal structure, light absorption capability and photoelectrochemicat (PECH) property of as-obtained Pd/C-N-S-TiO2 NS electrodes were determined and investigated through the various characterizations. The photocatalytic (PC) and photo-electrocatalytic (PEC) activity of the Pd/C-N-S-TiO2 NS electrode was evaluated through the degradation of acetylsalicylic acid and the formation of (OH)-O-center dot radicals. Compared with pristine TiO2 NS, Pd/TiO2 NS and C-N-S-TiO2 NS, Pd/C-N-S-TiO2 NS electrode displayed greatly enhanced PC and PEC activity towards the degradation of acetylsalicylic acid under visible light (lambda > 420 nm) or Xenon light irradiation. The synergy effect of interfacial transfer of photoinduced electrons between Pd nanoparticles and TiO2 NS as well as the external potential and intense visible light absorption induced by C, N and S co-doing promoted the effective charge separation and transfer and more visible photons to participate in the catalytic process on obtained Pd/C-N-S-TiO2 NS, which were evidenced by a series of characterizations, resulting in highly efficient and stable PC and PEC activity. Moreover, the probable visible light PEC mechanism was proposed. (C) 2016 Elsevier B.V. All rights reserved.
机译:采用光辅助沉积技术在一步法水热合成制备的C-N-S-共掺杂TiO2纳米片(Pd / C-N-S-TiO2 NS)阵列光电极上构建高度分散的Pd纳米微晶。确定了Pd / C-N-S-TiO2 NS电极的形貌,元素组成,晶体结构,光吸收能力和光化学性能(PECH),并通过各种表征对其进行了研究。通过乙酰水杨酸的降解和(OH)-O-中心点自由基的形成,评估了Pd / C-N-S-TiO2 NS电极的光催化(PC)和光电催化(PEC)活性。与原始TiO2 NS,Pd / TiO2 NS和C-N-S-TiO2 NS相比,Pd / C-N-S-TiO2 NS电极在可见光(λ> 420 nm)或氙灯照射下显示出极大的PC和PEC活性,可降解乙酰水杨酸。 Pd纳米粒子与TiO2 NS之间的光致电子界面转移以及C,N和S共同诱导的外部电势和强烈的可见光吸收的协同效应促进了有效的电荷分离和转移,更多的可见光子参与一系列表征证明了对所得Pd / CNS-TiO2 NS的催化过程,从而获得了高效,稳定的PC和PEC活性。此外,提出了可能的可见光PEC机制。 (C)2016 Elsevier B.V.保留所有权利。

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