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Broom-like and flower-like heterostructures of silver molybdate through pH controlled self assembly

机译:通过pH控制的自组装,钼酸银的扫帚状和花状异质结构

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Silver molybdate microrods are self-assembled into micron sized, broom-like and flower-like structures. Our investigations indicate that through a simple hydrothermal process, large scale production of such structure is possible. Using ammonium molybdate and silver nitrate solutions as precursors, we were able to show that the self assembled architectures were dependent on the pH of the starting precursor material. To understand the formation and destructions of the flower-like morphology, a systematic broad range (from acidic to basic) of pH-controlled experiments were performed and its influence on the structure/microstructure of synthesized materials was investigated. Scanning electron microscopy studies revealed that the morphology and microstructure of the products varied significantly by changing pH values from 3 to 8 during mixing of the reactants. pH = 3 and 4 resulted in the self assembly of monoclinic Ag2(Mo2O7) microrods into broom-like structures, whereas pH = 5 resulted into the flower-like morphology of mixed phase of monoclinic and triclinic Ag2Mo2O7. We also found that increasing the pH after a certain threshold value (for example pH > 6) resulted in total collapse of the flower-like morphology. Further increase of the pH to 7 and 8 resulted, the formation of microparticles of Ag2MoO4. A tentative scheme based on the pH-driven evolution of the self-assembly has been given to explain the formation of the observed heterostructures. Preliminary electrical characterization of thin films of the flower-like structures rendered non-linear current–voltage (I–V) responses. We also observed a strong hysteresis in the I–V responses of the flower-like structures developed under high bias conditions.
机译:钼酸银微棒可自组装成微米大小,扫帚状和花状结构。我们的研究表明,通过简单的水热过程,可以大规模生产这种结构。使用钼酸铵和硝酸银溶液作为前体,我们能够证明自组装结构取决于起始前体材料的pH。为了理解花状形态的形成和破坏,进行了系统的宽范围(从酸性到碱性)的pH受控实验,并研究了其对合成材料的结构/微结构的影响。扫描电子显微镜研究表明,在反应物混合期间,通过将pH值从3改变为8,产物的形态和微观结构发生了显着变化。 pH = 3和4导致单斜晶Ag 2 (Mo 2 O 7 )微棒自组装成扫帚状结构,而pH = 5导致单斜晶和三斜晶Ag 2 Mo 2 O 7 混合相的花状形态。我们还发现,在某个阈值(例如,pH> 6)之后增加pH值会导致花朵状形态完全崩溃。 pH进一步升高至7和8,形成Ag 2 MoO 4 微粒。给出了一个基于pH驱动的自组装进化的尝试方案,以解释观察到的异质结构的形成。花状结构的薄膜的初步电学表征呈现出非线性电流-电压(IV)响应。我们还观察到在高偏置条件下形成的花状结构的I-V响应具有很强的滞后性。

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