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Enhancing microwave absorption of TiO_2 nanocrystals via hydrogenation

机译:通过氢化增强TiO_2纳米晶体的微波吸收

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摘要

TiO_2 has attracted tremendous research interest for photocatalytic water splitting, solar hydrogen generation, environmental pollution removal, dye-sensitized solar cells, lithium-ion batteries, supercapacitors, and field emission. Microwave absorption materials (MAMs) play important roles in many military (e.g., the stealth coating on the B-2 bomber) and civil (e.g., telecommunications, noise reduction, information security, signal, and data protection) applications. However, TiO_2 is ' not a good MAM due to its poor absorption in the microwave region. Here, we report that via hydrogenation excellent and tunable microwave absorption is achieved with hydrogenated TiO_2 nanocrystals. After hydrogenation, 4.3x and 103x improvements have been obtained in storing and dissipating the electric energy of the microwave electromagnetic field. Their permittivity values are higher than those of the current carbonaceous MAMs. Instead of relying on the dipole rotation or ferromagnetic resonance mechanisms for traditional MAMs, the hydrogenated TiO_2 nanocrystals work as good MAMs based on a newly proposed collective-movement-of-interfacial-dipole (CMID) mechanism. Although there is still no direct physical evidence of the interface effects of the CMID mechanism, the CMID as a hypothesis at this point successfully explained the origin of the enhanced microwave absorption of the hydrogenated TiO_2 nanoparticles. This study thus may open new applications for TiO_2 nanocrystals and also stimulate new approaches for new MAM development.
机译:TiO_2在光催化水分解,太阳能制氢,去除环境污染,染料敏化太阳能电池,锂离子电池,超级电容器和场发射方面引起了巨大的研究兴趣。微波吸收材料(MAM)在许多军事(例如B-2轰炸机上的隐形涂层)和民用(例如电信,降噪,信息安全,信号和数据保护)应用中都起着重要作用。然而,由于TiO_2在微波区域的吸收较差,因此不是很好的MAM。在这里,我们报告说,通过氢化,TiO_2纳米晶体可以实现出色的可调谐微波吸收。氢化后,在存储和消散微波电磁场的电能方面获得了4.3倍和103倍的改进。它们的介电常数值高于当前的碳质MAM。氢化的TiO_2纳米晶体不再依赖于传统MAM的偶极子旋转或铁磁共振机制,而是基于一种新提出的界面偶极子集体运动(CMID)机制,可以作为优良的MAM。尽管仍然没有直接物理证据表明CMID机制的界面作用,但此时CMID作为假设成功地解释了氢化TiO_2纳米粒子增强微波吸收的起源。因此,这项研究可能会为TiO_2纳米晶体打开新的应用领域,并为新的MAM开发激发新的方法。

著录项

  • 来源
    《Journal of Materials Research》 |2014年第18期|2198-2210|共13页
  • 作者单位

    Department of Chemistry, University of Missouri - Kansas City, Kansas City, Missouri 64110, USA;

    Department of Chemistry, University of Missouri - Kansas City, Kansas City, Missouri 64110, USA;

    Department of Chemistry, University of Missouri - Kansas City, Kansas City, Missouri 64110, USA;

    Department of Chemistry, University of Missouri - Kansas City, Kansas City, Missouri 64110, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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