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Titlebook: Handbook of Materials Science, Volume 1; Optical Materials Raghumani S. Ningthoujam,A. K. Tyagi Book 2024 The Editor(s) (if applicable) and

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Lanthanide-Doped Materials for Optical Applications,ations due to their unique optical emission. This chapter gives a brief account of lanthanides and the basics of luminescence in them. Further, the downshifting and upconversion-based luminescence of lanthanide ions has been briefed in different types of host matrices including inorganic oxide phosp
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Defect-Modulated Trap Engineering of Long Persistent and Mechanoluminescence Phosphors for Advancedt as color centers enabling electron–hole recombination or exist as effective trap states in a variety of optical materials. While their role as color centers paves the way for developing many activator-free phosphor materials, defect-related trap centers play the most crucial role in activator-base
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,Triarylamines—A Versatile Molecular Building Block for Optoelectronic Materials,gation, an extension of molecular structure with the ease of functionalization, and judiciously tailorable structures for the desired applications. The library of molecules developed based on TPA as a core or terminal group is numerous and predominantly projected towards the choice of materials for
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Luminescent Materials for Radiation Dosimetry,ology’s progress. However, the indiscriminate use of ionizing radiation underscores the need for safety procedures and worker monitoring. It is important to minimize the stochastic effect and prevent deterministic effects due to ionizing radiation for occupational workers. Hence, radiation doses of
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