首页> 外文期刊>New Journal of Chemistry >Photocurrent enhancement from an active hybrid TiO_2 film electrode fabricated by a sol-gel method: photocurrent generation during the photooxidation of 4-nonylphenol and 4-nonylphenol polyethoxylate on TiO_2/OTE electrodes
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Photocurrent enhancement from an active hybrid TiO_2 film electrode fabricated by a sol-gel method: photocurrent generation during the photooxidation of 4-nonylphenol and 4-nonylphenol polyethoxylate on TiO_2/OTE electrodes

机译:溶胶-凝胶法制备的活性杂化TiO_2薄膜电极的光电流增强:在TiO_2 / OTE电极上4-壬基酚和4-壬基酚聚乙氧基化物的光氧化过程中产生光电流

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摘要

Photocurrent is generated during the photooxidation of nonylphenol polyethoxylate surfactants (NPE-n; n = 1,5,7,9 and 10), precursors of 4-nonylphenol (NP), on illuminated TiO_2/OTE electrodes on which TiO_2 semiconductor particles were immobilized by a pasting (PA), a sol-gel (SG), or both techniques (HY). The photooxidation process of NP and NPEs was examined by absorption spectroscopic methods monitoring the cleavage of the benzene ring moiety, and by the evolution of CO_2 gas. The kinetics of photooxidation and the magnitude ofthe generated photocurrent scaled with the length of the ethoxyl side-chain for NPEs where n - 0,1,5,7, and 10. The relative order of adsorption of NPEs on the positive TiO_2 surface was predicted from calculated partial negative point charges of all the C and O atoms in the NPEs using molecular orbital methods. Both photodegradation and photocurrent generation were enhanced for the NPE-9 substrate using the HY TiO_2/OTE electrode compared to the PA and SG electrodes. Although, biodegradation of NPEs yields NP in rivers, no formationof NP was observed during the photooxidation of NPE-9 because of predominant opening of the benzene ring. Photooxidation of NPEs is facilitated under an applied bias of +0.3 V and scales with the number of ethoxylate groups.
机译:在壬基酚聚乙氧基表面活性剂(NPE-n; n = 1,5,7,9和10)(4-壬基酚(NP)的前体)的光氧化过程中,在固定有TiO_2半导体颗粒的照明TiO_2 / OTE电极上产生光电流。通过粘贴(PA),溶胶-凝胶(SG)或两种技术(HY)。 NP和NPE的光氧化过程通过吸收光谱法监测苯环部分的裂解,并通过放出CO_2气体进行检查。 NPE的光氧化动力学和产生的光电流的大小与乙氧基侧链的长度成比例,其中n-0、1、5、7和10。预测了NPE在TiO_2正表面上的相对吸附顺序。使用分子轨道方法从NPE中所有C和O原子的部分负负电荷计算得出。与PA和SG电极相比,使用HY TiO_2 / OTE电极的NPE-9衬底的光降解和光电流产生均得到增强。尽管NPEs的生物降解在河流中产生了NP,但由于苯环的主要开放,在NPE-9的光氧化过程中未观察到NP的形成。在+0.3 V的施加偏压下,NPE的光氧化作用得以促进,并随乙氧基团的数量而缩放。

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