首页> 外文期刊>Turkish journal of chemistry >Synthesis and characterization of novel unsymmetrical phthalocyanine/TiO$_{2}$ composites and their evaluation as photocatalysts for degradation of 4-chlorophenol under visible light
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Synthesis and characterization of novel unsymmetrical phthalocyanine/TiO$_{2}$ composites and their evaluation as photocatalysts for degradation of 4-chlorophenol under visible light

机译:新型不对称酞菁/ TiO $ _ {2} $复合材料的合成,表征及其在可见光下降解4-氯苯酚的光催化剂性能评价

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We prepared novel unsymmetrical A$_{3}$B-type zinc and cobalt phthalocyanines bearing monocarboxylic acid groups on peripheral positions using statistical condensation method, especially designed to anchor on the TiO$_{2}$ semiconductor surface. The novel complexes were anchored on TiO$_{2}$ semiconductor to prepare effective dye sensitized photoactive composites as heterogeneous catalysts. The results indicated that modified TiO$_{2}$ nanocrystals possessed only the anatase phase and MPc-TiO$_{2}$ photocatalysts with loading amount of dye ca. 8.27 $mu $mol/g TiO$_{2}$ exhibit strong visible light absorption. Photocatalytic degradation of 4-chlorophenol (4-CP) under illumination with visible light ($lambda >$ 400 nm) was tested with the composites prepared. The degradation profile indicates that MPc-modified titania nanocrystals are superior to pristine titania under visible light in terms of photocatalytic effect. Photocatalytic reusability efficiency and the stability of photocatalyst composites were also investigated. Additionally, the effect of different substituent groups (such as aromatic vs. aliphatic, alkyl chain length) on photocatalytic efficiency was revealed and also compared to our previous works.
机译:我们使用统计缩合方法制备了在外围位置带有单羧酸基团的新型不对称A $ _ {3} $ B型锌和钴酞菁,特别设计用于固定在TiO $ _ {2} $半导体表面上。将新型络合物固定在TiO $ _ {2} $半导体上,以制备有效的染料敏化光敏复合材料作为多相催化剂。结果表明,改性后的TiO $ _ {2} $纳米晶体仅具有锐钛矿相和MPc-TiO $ _ {2} $光催化剂,染料的担载量约为1。 8.27美元/微克分子/克TiO $ _ {2} $具有很强的可见光吸收能力。用制备的复合材料测试了在可见光(λλ> 400nm)照射下4-氯苯酚(4-CP)的光催化降解。降解曲线表明,MPc-修饰的二氧化钛纳米晶体在光催化作用下在可见光下优于原始二氧化钛。还研究了光催化重用效率和光催化剂复合材料的稳定性。此外,还揭示了不同取代基(例如芳族与脂肪族,烷基链长)对光催化效率的影响,并与我们以前的工作进行了比较。

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