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Preparation of size controllable MgO nanoparticles via reverse microemulsion method

机译:反向微乳液法制备尺寸可控的MgO纳米粒子

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Nanoparticles of MgO were successfully prepared in Triton X-100-hextnol/cyclohexane/water W/O microemulsion system. Basic preparation conditions were determined. TG-DTA showed that the proper calcination temperature was 450 °C. The nanoparticles were characterized by XRD and IR measurements in order to determine the crystal phase and component of the products. The morphological feature of the nanoparticles has been investigated by TEM. The result of XRD pattern demonstrated that the particles were exactly indexed to a cubic rock salt structure of MgO. There are no organic or inorganic impurities appeared after 450 °C calcination. The result of TEM showed that the MgO nanoparticles were spherical and uniform. The UV-visible spectra demonstrated the phenomenon of absorption blue shift, which is the evidence of quantum confinement effect, with the decrease of water/surfactant(R) value. Average size of the nanoparticles increased with increasing R value.
机译:在Triton X-100 /正己醇/环己烷/水W / O微乳液体系中成功制备了MgO纳米颗粒。确定了基本的制备条件。 TG-DTA表明合适的煅烧温度为450℃。通过XRD和IR测量来表征纳米颗粒,以便确定产物的晶相和组分。纳米颗粒的形态特征已经通过TEM进行了研究。 XRD图谱的结果表明,该颗粒被精确地标定为MgO的立方岩盐结构。 450°C煅烧后未出现有机或无机杂质。 TEM的结果表明,MgO纳米颗粒为球形且均匀。紫外可见光谱显示出吸收蓝移现象,这是量子限制效应的证据,随着水/表面活性剂值的降低。纳米粒子的平均尺寸随着R值的增加而增加。

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