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首页> 外文期刊>RSC Advances >Synthesis, local structure and optical property studies of alpha-SnS microrods by synchrotron X-ray pair distribution function and micro-Raman shift
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Synthesis, local structure and optical property studies of alpha-SnS microrods by synchrotron X-ray pair distribution function and micro-Raman shift

机译:Synchrotron X射线对分布函数和微拉曼偏移的α-SNS微孔的合成,局部结构和光学性质研究

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摘要

A hydrothermal synthesis method was employed for the preparation of tin sulfide (alpha-SnS) microrod samples (SnS-A and SnS-B) using ethylenediamine and deionized water as the surfactant at ratios from 50 : 50 to 100 : 00. The atomic structures of the alpha-SnS microrods were studied using atomic pair distribution function (PDF) analysis and total synchrotron X-ray scattering data. The synchrotron X-ray diffraction (ScXRD) patterns and PDF data reveal that the structure of the SnS microrods is orthorhombic. From the refinement of the PDF, the first and second peaks correspond to nearest (Sn2+-S2-) and second nearest distances (Sn2+-Sn2+) of 2.546 (0.003) angstrom and 4.106 (0.004) angstrom, and 2.527 (0.005) angstrom and 4.087 (0.006) angstrom for SnS-A and SnS-B samples, respectively. The TEM results show that samples SnS-A and SnS-B have a microrod structure, with microrod diameters of 800 nm and 500 nm with lengths of tens of micrometers, respectively. The SnS-A and SnS-B samples show a direct band gap of 1.6 eV and 2 eV, respectively, using the Kubelka-Munk transformation of the UV-visible spectra. The micro-Raman spectra of the SnS-A and SnS-B microrods exhibited an Ag mode of SnS at 228.4 and 223 cm(-1), respectively. The second peaks at 306.7, and 309 cm(-1)are associated with the secondary phases of the SnS(2)phase, whereas the third broad peaks at 616.5, and 613 cm(-1)revealed that there was a deformation mode of sulfate in the SnS-A and SnS-B samples.
机译:使用水热合成方法用于制备使用乙二胺和去离子水的硫化物(α-SNS)微小物样品(SNS-A和SNS-B),以比例为50:50至100:00的表面活性剂。原子结构使用原子对分布函数(PDF)分析和总同步X射线散射数据研究了α-SNS微频。 Syschrotron X射线衍射(SCXRD)模式和PDF数据显示SNS MicroOROD的结构是正反的。从PDF的改进,第一和第二峰值对应于最近的(SN2 + -S2-)和2.546(0.003)埃和4.106(0.004)埃的第二最接近距离(SN2 + -SN2 +)和2.527(0.005)埃SNS-A和SNS-B样品的4.087(0.006)Angstrom。 TEM结果表明,样品SNS-A和SNS-B具有MicroRod结构,微摩洛直径为800nm和500nm,分别具有数十微米的长度。 SNS-A和SNS-B样品分别使用UV可见光光谱的Kubelka-Munk转换显示1.6eV和2eV的直接带隙。 SNS-A和SNS-B Microrod的微拉曼光谱分别在228.4和223cm(-1)分别显示出Sn的Ag模式。 306.7和309cm(-1)的第二峰与SNS(2)相的二次相相关,而第三宽峰在616.5和613cm(-1)中显示出存在变形模式SNS-A和SNS-B样品中的硫酸盐。

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  • 来源
    《RSC Advances》 |2020年第36期|共6页
  • 作者单位

    Arts Commerce &

    Sci Coll Dept Phys YCSPMs DDSP Jalgaon 425109 Maharashtra India;

    ACS Coll Dept Phys Dharangaon 425105 India;

    Arts Commerce &

    Sci Coll Dept Phys YCSPMs DDSP Jalgaon 425109 Maharashtra India;

    Bhabha Atom Res Ctr High Pressure &

    Synchrotron Radiat Phys Div Mumbai MS India;

    UGC DAE CSR Univ Campus Khandwa Rd Indore 452017 India;

    Dr Babasaheb Ambedkar Marathwada Univ Adv Mat Res Lab Dept Phys Auranagabad 431004 MS India;

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  • 正文语种 eng
  • 中图分类 化学;
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