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Self-Assembled Nanomaterials Based on Complementary Sn(IV) and Zn(II)-Porphyrins and Their Photocatalytic Degradation for Rhodamine B Dye

机译:基于互补Sn(IV)和Zn(II)-苯甲蛋白的自组装纳米材料及其对罗丹明B染料的光催化降解

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摘要

A series of porphyrin triads (1–6), based on the reaction of trans-dihydroxo-[5,15-bis(3-pyridyl)-10,20-bis(phenyl)porphyrinato]tin(IV) (SnP) with six different phenoxy Zn(II)-porphyrins (ZnLn), was synthesized. The cooperative metal–ligand coordination of 3-pyridyl nitrogens in the SnP with the phenoxy Zn(II)-porphyrins, followed by the self-assembly process, leads to the formation of nanostructures. The red-shifts and remarkable broadening of the absorption bands in the UV–vis spectra for the triads in CHCl3 indicate that nanoaggregates may be produced in the self-assembly process of these triads. The emission intensities of the triads were also significantly reduced due to the aggregation. Microscopic analyses of the nanostructures of the triads reveal differences due to the different substituents on the axial Zn(II)-porphyrin moieties. All these nanomaterials exhibited efficient photocatalytic performances in the degradation of rhodamine B (RhB) dye under visible light irradiation, and the degradation efficiencies of RhB in aqueous solution were observed to be 72~95% within 4 h. In addition, the efficiency of the catalyst was not impaired, showing excellent recyclability even after being applied for the degradation of RhB in up to five cycles.
机译:一系列卟啉三合会(1-6),基于反式二羟基 - [5,15-双(3-吡啶基)-10,20-双(苯基)卟啉]锡(IV)(SNP)的反应合成六种不同的苯氧基Zn(II) - 苯嘧啶(ZnLn)。用苯氧基Zn(II)-苯基(II)-苯甲蛋白的SNP中3-吡啶基氮的合作金属 - 配体配位,然后是自组装过程,导致纳米结构的形成。在CHCL3中的三元的UV-VIS光谱中的吸收带的红移和显着扩展表明纳米聚集可以在这些三合会的自组装过程中产生。由于聚集,三合会的排放强度也显着降低。三合会的纳米结构的微观分析显示由于轴向Zn(II)-孢子部分的不同取代基引起的差异。所有这些纳米材料在可见光照射下的罗丹明B(RHB)染料的降解中表现出高效的光催化性能,并且在4小时内观察到水溶液中RHB的降解效率为72〜95%。此外,催化剂的效率不会受到损害,甚至在施用最多五个循环后的RHB的降解后,即使在施用过rHB后,也显示出优异的再循环性。

著录项

  • 期刊名称 Molecules
  • 作者

    Nirmal K. Shee; Hee-Joon Kim;

  • 作者单位
  • 年(卷),期 2021(26),12
  • 年度 2021
  • 页码 3598
  • 总页数 16
  • 原文格式 PDF
  • 正文语种
  • 中图分类 分子生物学;
  • 关键词

    机译:互补卟啉;自组装;纳米材料;光催化降解;

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