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首页> 外文期刊>RSC Advances >Hybrid TiO2-acetylacetonate amorphous gel- derived material with stably adsorbed superoxide radical active in oxidative degradation of organic pollutants
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Hybrid TiO2-acetylacetonate amorphous gel- derived material with stably adsorbed superoxide radical active in oxidative degradation of organic pollutants

机译:杂交TiO2-乙酰丙酮非晶凝胶衍生材料,其具有稳定吸收的超氧化物激进的有机污染物的氧化降解

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摘要

Hybrid sol-gel TiO2-acetylacetonate (HSGT)material has been synthesized via a sol-gel route. The as dried HSGT can be described as an amorphous polymeric network of titaniumoxo-clusters on which surface part of Ti ~(4+) ions are involved in strong complexation with acetylacetonate (acac) ligands. In this material a ligand-to-metal charge transfer (LMCT) is active giving light absorption in the visible region indicating a band gap of 2.5 eV, lower than crystalline TiO2. In the HSGT gel derived material the LMCT mechanism results much more active respect to ligands on crystalline nanoparticles. In presence of air, the acac ligands on the HSGT surface are able to generate and stabilize superoxide radical as resulting by EPR measurements. The ~·O2~- radicals were stably adsorbed on the HSGT at room temperature for very long time. The presence of these free radicals makes HSGT material a useful catalyst in degradation of organic pollutants. Its catalytic activity has been tested in the oxidative degradation of phenanthrene resulting in a fast degradation rate in absence of any light irradiation.
机译:通过溶胶 - 凝胶途径合成杂化溶胶 - 凝胶TiO 2-乙酰丙酮(HSGT)材料。作为干燥的HSGT可以描述为钛氧氧杂环簇的无定形聚合物网络,其中Ti〜(4+)离子的表面部分涉及与乙酰丙酮(ACAC)配体的强络络合。在该材料中,配体 - 金属电荷转移(LMCT)在可见区域中具有光吸收,表示2.5eV的带隙,低于结晶TiO 2。在HSGT凝胶衍生材料中,LMCT机构导致结晶纳米颗粒上的配体更加活跃。在空气存在下,HSGT表面上的ACAC配体能够产生并稳定超氧化物自由基,得到通过EPR测量所产生的。 〜·O2〜 - 自由基在室温下稳定地吸附在HSGT上很长一段时间。这些自由基的存在使HSGT材料成为有机污染物的降解中的有用催化剂。其催化活性已在菲苯乙烯的氧化降解中进行测试,导致在不存在任何光照射的情况下产生快速降解速率。

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  • 来源
    《RSC Advances》 |2015年第114期|共9页
  • 作者单位

    Universita di Napoli Federico II Dipartimento di Agraria Via Universita 100 I-80055 Portici Na Italy.;

    Universita di Napoli Federico II Dipartimento di Ingegneria Chimica dei Materiali e della Produzione Industriale P.le Tecchio 80 I-80125 Napoli Italy;

    Universita di Napoli Federico II Dipartimento di Ingegneria Chimica dei Materiali e della Produzione Industriale P.le Tecchio 80 I-80125 Napoli Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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