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- W2496758068 abstract "Phosphors are key materials used to convert electronic information into visible signals. The rapid development of various full-color, electronic, flat-panel displays (FPDs), including field-emission displays (FEDs), electroluminescent displays (ELDs), and plasma display panels (PDPs), demands timely discovery of advanced phosphors. The specific excitation media and operating environment of various FPDs require different sets of tricolor phosphors for desirable contrast, operation lifetime, and color properties. Although the photophysical process of phosphors under regular ultraviolet (UV) excitation is relatively well known, the fluorescent process of phosphors under excitation by an electron beam (FED, projection TV), charge injection (EL), or vacuum UV (plasma diaplay) are not well understood. The development of various FPD technologies is, to a large extent, limited by the lack of efficient tricolor phosphors. To speed up the discovery of phosphors for display applications, a combinatorial approach has been developed and applied to the synthesis and screening of phosphors. This chapter will review the combinatorial methodologies and their applications to phosphor materials. Phosphor libraries can be made in either thinfilm or powder forms, using masking strategies and a liquid dispensing system, respectively. High areal density libraries with 100–1000 discrete phosphor compositions on a 1-inch-square substrate can be routinely made. Both compositions and synthesis temperatures can be optimized in a high-throughput mode. Detailed" @default.
- W2496758068 created "2016-08-23" @default.
- W2496758068 creator A5015099727 @default.
- W2496758068 date "2003-08-19" @default.
- W2496758068 modified "2023-10-16" @default.
- W2496758068 title "Combinatorial Synthesis of Display Phosphors" @default.
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- W2496758068 doi "https://doi.org/10.1201/9780203912737.ch6" @default.
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