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首页> 外文期刊>RSC Advances >Synthesis and characterisation of novel Cu(ii)-anchored biopolymer complexes as reusable materials for the photocatalytic degradation of methylene blue
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Synthesis and characterisation of novel Cu(ii)-anchored biopolymer complexes as reusable materials for the photocatalytic degradation of methylene blue

机译:新型Cu(II)-Achional的生物聚合物复合物的合成与表征作为亚甲基蓝光催化降解的可再用料

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摘要

This study focused on the synthesis, photocatalytic degradation of organic dyes and biological activity of novel N, N, O-donor tridentate water soluble 4-hydroxy benzohydrazide-grafted biopolymer Schiff base Cu(ii) complexes. The eco-friendly catalysts were designed for potential application in the degradation of organic dyes. The photocatalytic degradation of methylene blue was investigated with various irradiation times (30, 60, 90 and 120 min), catalytic dosages (5, 10, 15 and 20 mg) and pH (3, 7 and 12). The as-prepared compounds were characterised via various techniques including FT-IR and FT-NMR spectroscopy; TGA-DTA, XRD, SEM-EDAX; ESR and UV-vis spectroscopy; photoluminescence, magnetic moment, and conductivity measurements; and elemental and thermal analysis. The crystallinity of the Schiff base ligands, chitosan, and their Cu(ii) complexes was analysed via X-ray diffraction (XRD) studies. The XRD patterns revealed that the polymer chitosan was more crystalline than the Schiff base ligands and their complexes. The surface morphological analysis by scanning electron microscopy (SEM) revealed that the Cu(ii) complexes were amorphous in nature compared to chitosan and the ligands. The anti-inflammatory and anti-diabetic studies of the biopolymer Cu(ii) complexes were performed using the albumin denaturation technique and McCue and Shetty method, respectively. The as-synthesized 4-hydroxy benzohydrazide-grafted O-carboxymethyl chitosan Schiff base ligands and their Cu(ii) complexes showed a good anti-inflammatory and antidiabetic effect. The photocatalytic activity proved that the aryl-substituted complex was more efficient than the aliphatic-substituted complex.
机译:该研究重点是合成,光催化降解有机染料的含量和新型N,N,O-供体三乙酸盐溶解的4-羟基苯并肼接枝的生物聚合物Schiff碱Cu(II)配合物。 ECO型催化剂设计用于有机染料的降解中的潜在应用。研究了亚甲基蓝的光催化降解,用各种辐射时间(30,60,90和120分钟),催化剂量(5,10,15和20mg)和pH(3,7和12)。通过包括FT-IR和FT-NMR光谱的各种技术以各种技术表征为制备的化合物; TGA-DTA,XRD,SEM-EDAX; ESR和UV-Vis光谱;光致发光,磁矩和电导率测量;和元素和热分析。通过X射线衍射(XRD)研究分析了Schiff碱配体,壳聚糖及其Cu(II)复合物的结晶度。 XRD图案显示聚合物壳聚糖比Schiff碱配体及其配合物更结晶。通过扫描电子显微镜(SEM)的表面形态分析显示,与壳聚糖和配体相比,Cu(II)复合物在性质中是无定形的。使用白蛋白变性技术和MCCUE和Shetty方法进行生物聚合物Cu(II)复合物的抗炎和抗糖尿病研究。作为合成的4-羟基苯肼嫁接的O-羧甲基壳聚糖席夫碱配体及其Cu(II)配合物显示出良好的抗炎和抗糖尿病效应。光催化活性证明了芳基取代的复合物比脂族取代的复合物更有效。

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