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Basic zinc carbonate as a precursor in the solvothermal synthesis of nano-zinc oxide

机译:碱式碳酸锌作为溶剂热合成纳米氧化锌的前体

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摘要

ZnO nanoparticles were synthesized solvothermally in various diols (ethylene glycol, di(ethylene glycol), tetra(ethylene glycol), 1,2-propanediol, 1,4-butanediol), using basic zinc carbonate (2ZnCO_3•3Zn(OH)_2) as a precursor for the first time. Since ZnCO_3 was sparingly soluble in diols the transformation reaction proceeded at a low reaction rate. Ethylene glycol was found as the most suitable medium among five diols studied yielding the smallest ZnO particles (~55 nm) and short reaction time, t_r (2 h). Diols with shorter chain length produced smaller ZnO particles. p-Toluene sulfonic acid (p-TSA) acted as a catalyst and reduced t_r from 8 h to 2 h in concentration of 0.02 M. Optimum reaction conditions for the synthesis in ethylene glycol were 185 ℃ and 2 h. At higher p-TSA concentrations (0.04-0.08 M) the size of ZnO particles was reduced from 500-800 nm to 50-100 nm and crystallite size to 25-30 nm. Benzene sulfonic acid (BSA) and inorganic bases (LiOH, NaOH, and KOH) also showed catalytic activities. Raman and photoluminescence spectroscopies revealed high concentration of defects on ZnO surface causing the emission of visible light and giving this type of ZnO higher potential in various (opto)-electronic application in comparison to Zn(Ⅱ) acetate based ZnO.
机译:使用碱性碳酸锌(2ZnCO_3•3Zn(OH)_2)在各种二醇(乙二醇,二(乙二醇),四(乙二醇),1,2-丙二醇,1,4-丁二醇)中溶剂热合成ZnO纳米颗粒。作为第一次。由于ZnCO_3微溶于二醇中,因此转化反应以低反应速率进行。在研究的五种二醇中,发现乙二醇是最合适的介质,它产生的ZnO颗粒最小(〜55 nm),反应时间短,t_r(2 h)。链长较短的二元醇可产生较小的ZnO颗粒。对甲苯磺酸(p-TSA)起到催化剂的作用,浓度为0.02 M时将t_r从8 h降低到2 h。在乙二醇中合成的最佳反应条件为185℃和2 h。在较高的p-TSA浓度(0.04-0.08 M)下,ZnO颗粒的尺寸从500-800 nm减小到50-100 nm,微晶尺寸减小到25-30 nm。苯磺酸(BSA)和无机碱(LiOH,NaOH和KOH)也显示出催化活性。拉曼光谱和光致发光光谱表明,ZnO表面缺陷的浓度很高,导致可见光的发射,与各种醋酸(Zn)基的ZnO相比,这种ZnO在各种(光电)电子应用中具有更高的电势。

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