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Metal Oxide Nanocrystals:Building Blocks for Mesostructures and Precursors for Metal Nitrides

机译:金属氧化物纳米晶体:用于金属氮化物的培培和前体的构建块

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Sol-gel routes to metal oxide nanoparticles in organic solvents under exclusion of water represent a valuable alternative to aqueous methods.In comparison to the complex aqueous chemistry,nonaqueous processes offer the possibility to better understand and to control the reaction pathways on a molecular level,enabling the synthesis of nanomaterials with high crystallinity and well-defined and uniform particle morphologies.The manifold role of the organic species in providing the oxygen for the oxide formation and in controlling the crystal growth and the assembly properties makes it possible to tailor the morphological,structural and compositional characteristics of the final inorganic products.In addition to metal oxides with nearly spherical crystallite sizes in the range of just a few nanometers,also more complex morphologies such as nanowire bundles,nanorods or lamellar organic-inorganic hybrids of varying hierarchical complexity can be achieved in one step and without the use of any surfactants.The spherical nanocrystallites are on the one hand versatile building blocks for the fabrication of fully crystalline and ordered mesoporous materials and on the other hand suitable precursors for the synthesis of metal nitride nanoparticles.This proceeding provides an overview of the various oxidic nanoparticles synthesized via the nonaqueous and surfactant-free sol-gel approach,summarizes the most frequently found formation mechanisms,and offers some insight into the crystallization pathway of nanoparticles.Furthermore,the use of metal oxide nanoparticles as nanobuilding blocks for the preparation of nano-and mesostructures as well as their transformation into metal nitride nanocrystals will be discussed.
机译:溶胶 - 凝胶在排除下的有机溶剂中的金属氧化物纳米颗粒的途径代表了含水方法的有价值的替代方法。与复合物水化学的比较,非水过程能够更好地理解和控制分子水平的反应途径的可能性。能够合成具有高结晶度的纳米材料和良好定义和均匀的颗粒形态。有机物种在为氧化物形成提供氧气和控制晶体生长和组装特性方面的歧管作用使得可以定制形态学,最终无机产品的结构和组成特征。除了几纳米范围内具有几乎球形微晶尺寸的金属氧化物,还更复杂的形态,如纳米线束,纳米峰或层状有机 - 无机杂种可以改变分层复杂性在一步中实现,而不使用Y表面活性剂。球形纳米晶体在一个手上的多功能构建块上,用于制造完全结晶和有序的介孔材料,另一方面适用于合适的金属氮化物纳米颗粒的前体。该程序提供了合成的各种氧化纳米粒子的概述通过非水和表面活性剂的溶胶 - 凝胶方法总结了最常见的形成机制,并对纳米颗粒的结晶途径提供了一些洞察力。加热,使用金属氧化物纳米颗粒作为纳米制成块,用于制备纳米和培条的纳米组织块以及将其转化为金属氮化物纳米晶体。

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