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首页> 外文期刊>Journal of Nanostructures >A facile synthesis and characterization of surfactant (CTAB/TSC/TX-100) assisted Ir-Sn bimetallic nanoparticles
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A facile synthesis and characterization of surfactant (CTAB/TSC/TX-100) assisted Ir-Sn bimetallic nanoparticles

机译:表面活性剂(CTAB / TSC / TX-100)辅助IR-SN双金属纳米颗粒的容易合成和表征

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The present work is mainly focused on the synthesis and characterization of surfactant-assisted Ir-Sn BMNP (bimetallic nanoparticles) using modified polyol method. CTAB (Cetyltrimethylammonium bromide), TSC (Trisodium citrate), and TX-100 (Triton X-100) as cationic, anionic, and nonionic surfactant respectively are used to study their effect on the particle size, morphology, and their stability. The synthesized particles are characterized by XRD, FE-SEM, EDAX, elemental mapping, TEM, HR-TEM, XPS and FT-IR, TGA, DTG, and DTA techniques. UV-Vis spectroscopy is used to monitor the synthesis of nanoparticles. The XRD patterns of all samples confirm that Ir-Sn BMNP are amorphous in nature. The influence of surfactant on the morphology and particle size of Ir-Sn BMNP samples was examined by the FE-SEM technique. The FE-SEM figures demonstrate that the particles of bimetal are in nano size, highly dispersed, and pseudo spherical in shape with smooth surfaces. The approximate crystallite (particle/grain) size of CTAB, TSC, and TX-100 assisted samples are ~1.39 nm (39 nm), ~2.2 nm (59 nm), and ~5.79 nm (89 nm) respectively, which are estimated from TEM and FE-SEM images. The presence and distribution of Ir and Sn elements in the BMNP is determined through EDAX and elemental mapping respectively. These techniques show that CTAB assisted Ir-Sn BMNP sample is in alloy form but TSC and TX-100 samples are in core-shell form, where the Ir core is surrounded by Sn shell. The XPS confirms the metallic state (Ir0), and the dual valence state of Sn (Sn2 and Sn4 ) is in the Sn 3d core level.
机译:本作本作主要专注于使用改性多元醇法的表面活性剂辅助IR-Sn BMNP(双金属纳米粒子)的合成和表征。 CTAB(柠檬酸三甲基甲基溴化铵),TSC(柠檬酸三钠)和TX-100(TRITON X-100)分别用于分别用于研究其对粒度,形态和稳定性的影响。合成的颗粒的特征在于XRD,Fe-SEM,edax,元素映射,TEM,HR-TEM,XPS和FT-IR,TGA,DTG和DTA技术。 UV-Vis光谱用于监测纳米颗粒的合成。所有样品的XRD模式确认IR-SN BMNP本质上是无定形的。用Fe-SEM技术检查了表面活性剂对IR-SN BMNP样品的形态和粒径的影响。 Fe-SEM图表明双金属颗粒在纳米尺寸,高度分散的和具有光滑表面的形状的伪球形。 CTAB,TSC和TX-100辅助样品的近似微晶(颗粒/粒子)尺寸为1.39nm(39nm),〜2.2nm(59nm),分别〜5.79nm(89nm),估计从TEM和FE-SEM图像。通过eDAX和元素映射确定BMNP中的IR和SN元素的存在和分布。这些技术表明,CTAB辅助IR-SN BMNP样品处于合金形式,但TSC和TX-100样品处于核心壳形式,其中IR芯被SN壳包围。 XPS确认金属状态(IR0),SN的双价状态(SN2和SN4)处于SN 3D核心等级。

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