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首页> 外文期刊>Journal of sulfur chemistry >Tris(dithiocarbamato)iron(III) complexes as precursors for iron sulfide nanocrystals and iron sulfide-hydroxyethyl cellulose composites
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Tris(dithiocarbamato)iron(III) complexes as precursors for iron sulfide nanocrystals and iron sulfide-hydroxyethyl cellulose composites

机译:Tris(二硫代氨基甲磺酸盐)铁(III)复合物作为硫化铁纳米晶体和硫化铁 - 羟乙基纤维素复合材料的前体

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摘要

Iron(III) complexes of dimethyldithiocarbamate and imidazolyl dithiocarbamate were synthesized and characterized by elemental analyses, FTIR, UV-VIS and the ligands by NMR spectroscopy. The complexes were thermolysed as single molecule precursors at 180 degrees C to prepare octadecylamine (ODA) capped iron sulfide nanocrystals and iron sulfide-hydroxyethyl cellulose (HEC) composites. UV-VIS, PL, FTIR, P-XRD, HRTEM, FESEM and EDS were used to characterize the iron sulfide nanocrystals and corresponding HEC nanocomposites. XRD confirmed iron sulfide nanocrystal (NP1) from dimethyldithiocarbamate to be hexagonal pyrrhotite-5H, Fe9S10 crystalline phase while iron sulfide nanocrystals (NP2) from imidazolyl dithiocarbamate is in pyrrhotite, Fe11S12 crystalline phase. TEM images show that the iron sulfide nanocrystals have particle sizes in the range 24-32nm for NP1 and 18-25nm for NP2 iron sulfide nanocrystals. The optical band gaps of the iron sulfide nanocrystals obtained from Tauc plots are 3.83 and 4.16 eV for NP1 and NP2, respectively. IR spectra, FESEM surface morphology and EDS spectra of iron sulfide/ HEC composites confirmed dispersion of the iron sulfide nanocrystals within the hydroxyethyl cellulose (HEC) matrix.
机译:通过NMR光谱合成二甲基二硫代氨基甲酰胺和二甲基二硫代氨基甲酰胺和咪唑基二硫代氨基甲酸二硫代氨基甲酸酯的复合物,并通过NMR光谱分析。将配合物在180℃下作为单分子前体热溶解,以制备十八烷基胺(ODA)封端的硫化铁纳米晶和铁硫化铁 - 羟乙基纤维素(HEC)复合材料。 UV-Vis,Pl,FTIR,P-XRD,HRTEM,HRTEM,FESEM和EDS用于表征硫化铁纳米晶体和相应的HEC纳米复合材料。 XRD证实二甲基二硫代氨基甲酸硫化铁硫化铁纳米晶(NP1)是六边形Pyrrhotite-5h,Fe9S10结晶相,而来自咪唑基二硫代氨基甲酸酯的硫化铁纳米晶(NP2)是Pyrhotite,Fe11s12结晶相。 TEM图像表明,硫化铁纳米晶体具有24-32Nm的颗粒尺寸,用于NP1和18-25nm的NP2铁硫化物纳米晶体。从TaUC图获得的硫化铁纳米晶的光带间隙分别为NP1和NP2的3.83和4.16eV。 IR光谱,铁硫化铁/ HEC复合材料的FeSEM表面形态和EDS光谱证实了硫化铁纳米晶体在羟乙基纤维素(HEC)基质中的分散。

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