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Synthesis and surface enthalpy of MgGa2O4 spinel

机译:MGGA2O4尖晶石的合成与表面焓

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摘要

Surface enthalpy for magnesium gallate, MgGa2O4 spinel, was directly measured using water adsorption microcalorimetry. The method relies on the Gibbs adsorption theory, using the heat involved when water molecules are adsorbed on the surface of the oxide to derive accurate surface enthalpy data. For this method to be efficient, high amounts of surfaces need to be probe, requiring the usage of nanoparticles. Therefore, in this study we initially propose a new method to synthesize MgGa2O4 nanoparticles by controlling the pH of the precipitating solution during co-precipitation of Mg,Ga hydroxides, followed by calcination. The nanoparticles showed the spinel phase and were characterized in terms of composition before subjected to calorimetry. The surface energy of the studied MgGa2O4 nanoparticles was found to be 1.44 +/- 0.1 J/m(2), consistently with surface energy data reported for other spinels.
机译:使用水吸附微量微量测定法直接测量Gallate,MGGA2O4尖晶石的表面焓。 该方法依赖于GIBBS吸附理论,使用当水分子吸附在氧化物表面上以导出精确表面焓数据时的热量。 对于该方法是有效的,需要大量的表面需要探针,需要使用纳米颗粒。 因此,在该研究中,我们最初提出了一种新方法来通过控制Mg,Ga氢氧化物的共沉淀过程中的沉淀溶液的pH来合成MGGA2O4纳米颗粒,然后进行煅烧。 纳米颗粒显示尖晶石相,以在对热量测定中进行组合物的表征。 研究了MGGA2O4纳米颗粒的表面能为1.44 +/- 0.1J / m(2),始终如一,与其他尖晶石报道的表面能数据。

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