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Ni-Cu bimetallic colloids prepred in nonaqueous solvents

机译:在非水溶剂中预浸的Ni-Cu双金属胶体

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Colloidal dispersions in nonaqueous media were obtained by simultaneous evaporation of Ni and Cu. The metals were cocondensed at 77 K in an organic matrix of 2-methoxyethanol, 2-propanol or acetone. The metallic dispersions were characterized by transmission electron microscopy, electron diffraction and UV-vis spectroscopy. The stability at room temperature was also measured. The stability of the Ni-Cu bimetallic dispersions is less than that of the Ni and Cu dispersions alone. The presence of more than one phase was observed. It is interesting to note that Ni/Cu ratio does not change the stability of the bimetallic dispersions dramatically. The polarity of the solvent should play a very important role in stabilizing the metal particles by solvatation effects. Transmission electron microscopy studies show the size control effect of Cu with small colloidal size in the bimetal. The electron diffraction studies reveal the presence of amorphous bimetallic particles and particles with crystal-linity show typical particles formed for more than one phase (NiO, CuO, Cu, Ni and Cu-Ni). Cu and Ni, for example, re amorphous and crystalline particles, respectively. Differential scanning calorimetry and X-ray spectroscopy characterized the bimetallic solids of Ni-Cu/2-methoxyethanol obtained by evaporation of solvent. The differential scanning calorimetry studies of the solids show transition characteristics of crystalline growth; no glass transitions were observed. The X-ray diffractograms show that the crystallites are too small (less than 100 A), giving rise to low intensity and wide peaks.
机译:通过同时蒸发Ni和Cu获得非水介质中的胶态分散体。所述金属在2-甲氧基乙醇,2-丙醇或丙酮的有机基质中在77K下共缩合。金属分散体通过透射电子显微镜,电子衍射和UV-可见光谱进行表征。还测量了室温下的稳定性。 Ni-Cu双金属分散体的稳定性低于单独的Ni和Cu分散体的稳定性。观察到存在多于一个相。有趣的是,Ni / Cu比不会显着改变双金属分散体的稳定性。溶剂的极性在通过溶剂化作用稳定金属颗粒中应起非常重要的作用。透射电子显微镜研究表明,双金属中具有小胶体尺寸的Cu的尺寸控制效果。电子衍射研究表明存在无定形双金属颗粒,并且具有结晶度的颗粒表明典型的颗粒形成了一种以上的相(NiO,CuO,Cu,Ni和Cu-Ni)。例如,Cu和Ni分别是非晶和结晶颗粒。差示扫描量热法和X射线光谱法表征了通过蒸发溶剂获得的Ni-Cu / 2-甲氧基乙醇的双金属固体。固体的差示扫描量热法研究显示了晶体生长的过渡特性;没有观察到玻璃化转变。 X射线衍射图表明,微晶太小(小于100 A),导致强度低和峰宽。

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