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Structural and optical characterizations of ZnO aerogel nanopowder synthesized from zinc acetate ethanolic solution

机译:醋酸锌乙醇溶液合成ZnO气凝胶纳米粉体的结构和光学表征

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摘要

ZnO aerogel powder has been synthesized by a modified sol-gel process using zinc acetate ethanolic solution. XRD, SEM, EDAX, FTIR, UV-visible absorption and photoluminescence (PL) techniques have been used to characterize the as-prepared and the annealed ZnO aerogel powders. The as-prepared ZnO powder has a well-defined polycrystalline hexagonal wurtzite structure. This measurement has demonstrated that the lattice parameters are lower than the standard ones indicating that drying in supercritical conditions of ethanol does not affect the crystallinity but acts as a compressive agent. EDAX measurements show that the obtained aerogel contains only O and Zn elements. Annealing improves the crystallinity in the low DRX angles and decreases the crystalline quality in the high diffraction angles. Also, annealing acts as a tensile agent and increases the lattice parameters. FTIR spectra confirm the annealing effect by the apparition of the strong Zn-O vibration band. The ZnO absorption band shifts to lower wave numbers after annealing indicating an increase in the Zn-O bond length and confirms the XRD results. UV-visible results show a decrease of the ZnO aerogel optical band gap after annealing and confirm the thermal decompression effect on the lattice parameters. The photoluminescence measurements show that the annealing of ZnO aerogel favors the thermal generation of zinc interstitials and oxygen vacancies defects existing in the as-prepared zinc oxide aerogel and shifts the emission toward lower energies.
机译:ZnO气凝胶粉末是通过使用醋酸锌乙醇溶液通过改进的溶胶-凝胶法合成的。 XRD,SEM,EDAX,FTIR,UV可见吸收和光致发光(PL)技术已用于表征制备和退火的ZnO气凝胶粉末。所制备的ZnO粉末具有明确的多晶六方纤锌矿结构。该测量表明晶格参数低于标准参数,这表明在乙醇的超临界条件下干燥不会影响结晶度,但可作为压缩剂。 EDAX测量表明,所获得的气凝胶仅包含O和Zn元素。退火改善了低DRX角的结晶度,降低了高衍射角的结晶质量。而且,退火充当拉伸剂并增加晶格参数。 FTIR光谱通过强Zn-O振动带的出现证实了退火效果。退火后,ZnO吸收带移至较低的波数,表明Zn-O键长增加,并证实了XRD结果。紫外可见结果表明,退火后ZnO气凝胶光学带隙减小,并证实了热解压缩对晶格参数的影响。光致发光测量结果表明,ZnO气凝胶的退火有利于锌间隙的热生成,以及所制备的氧化锌气凝胶中存在的氧空位缺陷,并使发射向较低能量转移。

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