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Room temperature inorganic polycondensation of oxide (Cu2O and ZnO) nanoparticles and thin films preparation by the dip-coating technique

机译:氧化物(Cu2O和ZnO)纳米粒子的室温无机缩聚和浸涂技术制备薄膜

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摘要

Oxide thin solid filmswere prepared by dip-coating into colloidal dispersions of oxide nanoparticles stabilized at room temperaturewithout the use of chelating or complex organic dispersing agents. Crystalline oxide nanoparticles were obtained by inorganic polycondensation and characterized by X-ray diffraction and field emission gun scanning electron microscopy. Water and ethanol synthesis and solution stabilization of oxide nanoparticle method was optimized to prepare two different structural and compositional materials, namely Cu2O and ZnO. The influence of hydrodynamic parameters over the particle shape and size is discussed. Spherical and rod shape nanoparticles were formed for Cu2O and ZnO, respectively. Isoelectric point values of 7.5 and 8.2 were determined for cuprous and zinc oxides, respectively, after zeta potential measurements. A shear thinning and thixotropic behavior was observed in both colloidal sols after peptization at pH ~6 with dilute nitric acid. Every colloidal dispersion stabilized in a low cost and environmentally friendly azeotrope solution composed of 96 vol.% of ethanol with water was used for the thin film preparation by the dip-coating technique. Optical properties of the light absorber cuprous oxide and transparent zinc oxide thin solid films were characterized by means of transmittance and reflectance measurements (300–1100 nm)
机译:通过在不使用螯合剂或复杂的有机分散剂的情况下,将浸涂在室温下稳定的氧化物纳米颗粒的胶态分散体中制备成氧化物固体薄膜。通过无机缩聚获得结晶氧化物纳米颗粒,并通过X射线衍射和场发射枪扫描电子显微镜表征。对水和乙醇的合成以及氧化物纳米粒子的溶液稳定化方法进行了优化,以制备两种不同的结构和组成材料,即Cu2O和ZnO。讨论了流体动力学参数对颗粒形状和尺寸的影响。分别形成了Cu2O和ZnO的球形和棒状纳米颗粒。在测量ζ电势后,分别测定了氧化亚铜和氧化锌的等电点值为7.5和8.2。在pH〜6的稀硝酸中胶溶后,在两种胶体溶胶中均观察到剪切变稀和触变性。通过浸涂技术制备的薄膜中使用的每种胶体分散体均稳定在低成本和环保型共沸溶液中,该溶液由96%(体积)的乙醇与水组成。通过透射率和反射率测量(300-1100 nm)来表征吸光剂氧化亚铜和透明氧化锌薄膜的光学性能

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