Novel Narrow-Band Blue Light-Emitting Phosphor of Eu2+-Activated Silicate Used for WLEDs

2021 ◽  
Author(s):  
Aixia Deng ◽  
Xinyu Tian ◽  
Xufeng Zhou ◽  
Jianyan Ding ◽  
Wanying Geng ◽  
...  

Owing to the broad application scope of phosphors for light and display, the development of narrow-band light-emitting phosphors has recently gained considerable research attention. In this study, a new type...

1995 ◽  
Vol 28 (6) ◽  
pp. 1966-1971 ◽  
Author(s):  
Jin-Kyu Lee ◽  
Richard R. Schrock ◽  
Derek R. Baigent ◽  
Richard H. Friend
Keyword(s):  

2008 ◽  
Vol 47 (14) ◽  
pp. 6289-6295 ◽  
Author(s):  
Min-Sik Eum ◽  
Chong Shik Chin ◽  
Song yi Kim ◽  
Choongil Kim ◽  
Sung Kwon Kang ◽  
...  

2007 ◽  
Vol 122-123 ◽  
pp. 663-666 ◽  
Author(s):  
Bingshe Xu ◽  
Hua Wang ◽  
Yuying Hao ◽  
Zhixiang Gao ◽  
Hefeng Zhou

2014 ◽  
Vol 139 (4) ◽  
pp. 469-477 ◽  
Author(s):  
Dean A. Kopsell ◽  
Carl E. Sams ◽  
T. Casey Barickman ◽  
Robert C. Morrow

Previous research in our group demonstrated that short-duration exposure to narrow-band blue wavelengths of light can improve the nutritional quality of sprouting broccoli (Brassica oleacea var. italica) microgreens. The objective of this study was to measure the impact of different percentages of blue light on the concentrations of nutritional quality parameters of sprouting broccoli microgreens and to compare incandescent/fluorescent light with light-emitting diodes (LEDs). Microgreen seeds were cultured hydroponically on growing pads under light treatments of: 1) fluorescent/incandescent light; 2) 5% blue (442 to 452 nm)/95% red (622 to 632 nm); 3) 5% blue/85% red/10% green (525 to 535 nm); 4) 20% blue/80% red; and 5) 20% blue/70% red/10% green in controlled environments. Microgreens were grown at an air temperature of 24 °C and a 16-hour photoperiod using a light intensity of 250 μmol·m−2·s−1 for all light treatments. On emergence of the first true leaf, a nutrient solution of 42 mg·L−1 nitrogen (N) (20% Hoagland’s #2 solution) was used to submerge the growing pads. Microgreens were harvested after 20 days under the light treatments and shoot tissues were processed and measured for nutritionally important shoot pigments, glucosinolates, and mineral nutrients. Microgreens under the fluorescent/incandescent light treatment had significantly lower shoot fresh mass than plants under the 5% blue/95% red, 5% blue/85% red/10% green, and the 20% blue/80% red LED light treatments. The highest concentrations of shoot tissue chlorophyll, β-carotene, lutein, total carotenoids, calcium (Ca), magnesium (Mg), phosphorus (P), sulfur (S), boron (B), copper (Cu), iron (Fe), manganese (Mn), molybdenum (Mo), zinc (Zn), glucoiberin, glucoraphanin, 4-methoxyglucobrassicin, and neoglucobrassicin were found in microgreens grown under the 20% blue/80% red light treatment. In general, the fluorescent/incandescent light treatment resulted in significantly lower concentrations of most metabolites measured in the sprouting broccoli tissue. Results from the current study clearly support data from many previous reports that describe stimulation of primary and secondary metabolite biosynthesis by exposure to blue light wavelengths from LEDs.


Author(s):  
Shida Tan ◽  
Richard H. Livengood ◽  
Dane Scott ◽  
Roy Hallstein ◽  
Pat Pardy ◽  
...  

Abstract High resolution optical imaging is critical in assisting backside circuit edit (CE) and optical probing navigation. In this paper, we demonstrated improved optical image quality using VIS-NIR narrow band light emitting diode (LED) illumination in various FIB and optical probing platforms. The proof of concept was demonstrated with both common non-contact air gap lenses and solid immersion lenses (SIL).


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