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- W38970093 endingPage "61" @default.
- W38970093 startingPage "3" @default.
- W38970093 abstract "In this chapter, we review the recent progress in optoelectronic applications of transparent wide band gap oxides. We concentrate especially on creating new functions in transparent oxides by forming or utilizing nanostructures embedded in the materials. First, our material design concept is introduced in relation to the electronic structures of the oxides. Then optoelectronic properties, electronic structures, and device applications are reviewed for (1) layered oxychalcogenides LnCuOCh (Ln = lanthanide, Ch = chalcogen), and (2) nanoporous crystal 12CaO.7Al2O3 (C12A7). Finally, fabrication of periodic nanostructures in transparent materials by interfering femtosecond (fs) laser pulses is reviewed. Sharp blue-to-UV light emission was observed in LnCuOCh originating from room-temperature stable exciton and the stability of exciton is discussed in relation to their two-dimensional electronic structures. C12A7 has free oxygen ions clathrated in its subnanometer-sized cages, and new functions may be added to C12A7 by replacing the free oxygen ions with active anions. Quantum calculations indicate that cages trapping electrons in C12A7 can be regarded as quantum dots. Micro/nano-processing techniques using fs pulses is an emerging approach to adding new functions to transparent materials. A distributed feedback laser structure was fabricated solely using the laser pulses and its oscillation at room temperature was demonstrated." @default.
- W38970093 created "2016-06-24" @default.
- W38970093 creator A5007812423 @default.
- W38970093 creator A5078054212 @default.
- W38970093 date "2006-01-01" @default.
- W38970093 modified "2023-10-18" @default.
- W38970093 title "Function Cultivation in Transparent Oxides Utilizing Natural and Artificial Nanostructures" @default.
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