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Microwave-Assisted Routes for the Synthesis of Complex Functional Oxides

机译:微波辅助合成复杂功能氧化物的途径

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The synthesis of complex functional inorganic materials, such as oxides, can be successfully performed by using microwave irradiation as the source of heat. To achieve this, different routes and set-ups can be used: microwave-assisted synthesis may proceed in the solid state or in solution, aqueous or not, and the set ups may be as simple and accessible as domestic oven or quite sophisticated laboratory equipment. An obvious advantage of this innovative methodology is the considerable reduction in time—minutes rather than hours or days—and, as a consequence, energy saving. No less important is the fact that the particle growth is inhibited and the broad variety of different microwave or microwave-assisted synthesis techniques opens up opportunities for the preparation of inorganic nanoparticles and nanostructures. In this work, various microwave synthesis techniques have been employed: solid-state microwaves, single-mode microwaves using a TE10p cavity and microwave-assisted hydrothermal synthesis. Relevant examples are presented and discussed.
机译:通过使用微波辐射作为热源,可以成功地完成复杂功能性无机材料(例如氧化物)的合成。为此,可以使用不同的路线和设置:微波辅助合成可以固态或在水溶液中或不在水溶液中进行,并且设置可以像家用烤箱或相当复杂的实验室设备一样简单易用。 。这种创新方法的一个明显优势是可以显着减少时间(分钟而不是数小时或数天),从而节省能源。同样重要的是,颗粒的生长受到抑制,并且各种不同的微波或微波辅助合成技术为无机纳米颗粒和纳米结构的制备提供了机会。在这项工作中,已采用了各种微波合成技术:固态微波,使用TE 10p 腔的单模微波和微波辅助水热合成。提出并讨论了相关示例。

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