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Progress in Transparent Nano-Ceramics and Their Potential Applications. | LitMetric

Progress in Transparent Nano-Ceramics and Their Potential Applications.

Nanomaterials (Basel)

Henan Key Lab of Intelligent Manufacturing of Mechanical Equipment, Zhengzhou University of Light Industry, Zhengzhou 450002, China.

Published: April 2022

AI Article Synopsis

  • Transparent nano-ceramics exhibit high light transmittance and have diverse applications, including infrared windows and solid-state lasers, making them a key area of study.
  • The review covers advancements in laser nano-ceramic materials, highlighting the role of rare earth ion doping in improving thermal conductivity and scaling up manufacturing processes.
  • It also examines the progress in various categories of transparent nano-ceramics, including magneto-optical and transparent armor materials, comparing their performance and discussing factors like particle size and sintering methods that affect production and quality.

Article Abstract

Transparent nano-ceramics have an important high-transmittance, material-integrating structure and function and a variety of potential applications, such as use in infrared windows, optical isolators, composite armors, intelligent terminal screens, and key materials of solid-state lasers. Transparent ceramics were originally developed to replace single crystals because of their low fabricating cost, controllable shape, and variable composition. Therefore, this study reviews and summarizes the development trends in transparent nano-ceramics and their potential applications. First, we review the research progress and application of laser nano-ceramic materials, focusing on the influence of controllable doping of rare earth ions on thermal conductivity and the realization of large-scale fabrication technology. Second, the latest research progress on magneto-optical transparent nano-ceramics, mainly including terbium gallium garnet (TbGaO, TGG) ceramics and terbium aluminum garnet (TbAlO, TAG) ceramics, are summarized, and their performance is compared. Third, the research progress of transparent armor nano-ceramic materials, represented by MgAlO and Aluminum oxynitride (AlON), are reviewed. Lastly, the progress in electro-optical transparent nano-ceramics and scintillation transparent nano-ceramics is reported, and the influence of the material-fabrication process on electro-optic effect or luminous intensity is compared. Moreover, the effect of particle diameter on fabrication, the relationship between nano powder and performance, and different sintering methods are discussed. In summary, this study provides a meaningful reference for low-cost and sustainable production in the future.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9099613PMC
http://dx.doi.org/10.3390/nano12091491DOI Listing

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