首页> 外文期刊>Journal of Materials Chemistry: An Interdisciplinary Journal dealing with Synthesis, Structures, Properties and Applications of Materials, Particulary Those Associated with Advanced Technology >Controlled release of precipitating agents through solvothermal destabilization of microemulsions;one-pot synthesis of monoclinic zirconia nanostructures
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Controlled release of precipitating agents through solvothermal destabilization of microemulsions;one-pot synthesis of monoclinic zirconia nanostructures

机译:通过微乳液的溶剂热失稳控制沉淀剂的释放;单斜氧化锆纳米结构的一锅合成

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摘要

We report a versatile one-step multiphase approach to control size,crystallinity and assembly at the nanoscale.The method takes advantage of the controlled release of precipitating agents achieved through the solvothermal destabilization of reverse microemulsions.This method permits the preparation of nanoparticles(as an example we prepare zirconia materials)self-assembled in open(palmate leaf-like)and compact nanostructures that could be easily processed using existing solution routes.The mechanisms of formation of these nanostructures are presented on the basis of the structural information and surface charge data provided by various techniques.The morphology of the nanostructures is found to be the combined result of several growth features,among which self-assembly driven by electrostatic forces plays a critical role.In addition,we have found that more open nanostructures lead to monoclinic zirconia samples with a higher degree of crystallinity,which supports the idea that surface energy must play a critical role in the stabilization of tetragonal polymorphs or amorphous zirconia phases.
机译:我们报告了一种通用的一步法多相方法,可控制纳米级的尺寸,结晶度和组装。该方法利用了通过反向微乳液的溶剂热去稳定作用实现的沉淀剂的控制释放。该方法可制备纳米颗粒例如,我们制备了氧化锆材料),这些氧化锆材料是自组装成开放的(掌状叶状)紧凑的纳米结构,可以使用现有的溶液路线轻松对其进行处理。根据结构信息和表面电荷数据,介绍了这些纳米结构的形成机理纳米结构的形态被发现是几种生长特征的综合结果,其中静电力驱动的自组装起着关键作用。此外,我们发现更多的开放纳米结构会导致单斜晶氧化锆。结晶度较高的样品,支持表面能量必须在稳定四方多晶型物或非晶态氧化锆相中起关键作用。

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