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Formation of surface magnetite nanoparticles from iron-exchanged zeolite using microwave radiation

机译:用微波辐射从铁交换沸石形成表面磁铁矿纳米颗粒

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摘要

Microwave radiation simplifies synthesis methods by reducing reaction times, requiring fewer materials, and also controlling reaction processes. We have successfully synthesized nanoparticles of iron oxide and zinc oxide coated on zeolite A using microwaves. The radiation assisted in displacing either ferrous or zinc ions from the pre-loaded zeolite network and increasing reaction speed with solution at the interface. Products were characterized by TEM, XRD, VSM, ICP-AES, and fluorescence. We demonstrate the ability of using cation-exchanged zeolites as microreactors to bias reactions onto the zeolite surface. Efficient structure-directed surface reactions are a potential route to making unique supported nanomaterials for applications such as sensors, environmental remediation, and chemical catalysis.
机译:微波辐射通过减少反应时间,需要更少的材料并控制反应过程来简化合成方法。我们已经成功地使用微波合成了包覆在沸石A上的氧化铁和氧化锌的纳米粒子。辐射有助于从预加载的沸石网络中置换铁离子或锌离子,并提高界面处溶液的反应速度。产品通过TEM,XRD,VSM,ICP-AES和荧光进行表征。我们证明了使用阳离子交换沸石作为微反应器将反应偏向沸石表面的能力。高效的结构导向表面反应是为传感器,环境修复和化学催化等应用生产独特的负载型纳米材料的潜在途径。

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  • 来源
    《Journal of Materials Science》 |2007年第21期|9057-9062|共6页
  • 作者单位

    Miami University Center for Nanotechnology Department of Chemistry and Biochemistry Miami University Oxford OH 45056 USA;

    Miami University Center for Nanotechnology Department of Chemistry and Biochemistry Miami University Oxford OH 45056 USA;

    Miami University Center for Nanotechnology Department of Chemistry and Biochemistry Miami University Oxford OH 45056 USA;

    Department of Physics Miami University Oxford OH 45056 USA;

    Department of Physics Miami University Oxford OH 45056 USA;

    Miami University Center for Nanotechnology Department of Chemistry and Biochemistry Miami University Oxford OH 45056 USA;

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