Phosphor-in-glass (PiG) thick film was fabricated on a borosilicate glass substrate using a conventional screen printing method and employing phosphosilicate glass to allow low-temperature sintering. The vehicle content and sintering temperature were optimized to form a thick film with a thickness of similar to 50m. Commercial yellow (Y3Al5O12:Ce3+) and red (CaAlSiN3:Eu2+) phosphors were successfully incorporated within the glass matrix and then sintered at 550 degrees C. Color-tunable white LEDs were achieved using the PiG thick films as a color converter by varying the glass to phosphor (GtP) ratio. The high luminous efficacy of up to similar to 120lm/W and high color rendering index of up to 89 in combination with the thermal quenching p...
Abstract: Recently, remote phosphor is reported for white LED enhancing of phosphor efficiency compa...
We demonstrate the possibilities offered by the screen-printing technique to create thick layers of ...
A phosphor-in-glass (PiG) with red and green phosphors using Nd-doped glass as a host matrix was fab...
Phosphor-in-glass (PiG) thick film was fabricated on a borosilicate glass substrate using a conventi...
Y3Al5O12:Ce3+ phosphor-in-glass (PiG) thin film on soda-lime silicate glass substrate has been appli...
A low sintering temperature glass based on the SiO2?P2O5?ZnO?B2O3?R2O (R=K and Na) system was studie...
Phosphor-in-glass (PiG) color converters for LED applications were fabricated with a mixture of phos...
A critical step in providing better phosphor solution for white light emitting diode (LED) is to uti...
Phosphor-in-glass (PiGs) is one of the most important strategies to overcome thermal influence in hi...
With the use of phosphor-in-glass (abbreviated as PiG), it is possible to make alterations for the r...
As a next-generation high-power lighting technology, laser lighting has attracted great attention in...
Phosphor-in-glasses (PiGs) with rare earth (RE) doped SiO2-B2O3-RO glasses were prepared by embeddin...
In this work, an aluminate silicate garnet phosphor, Y2Mg2Al2Si2O12:Ce3+ (YMASG:Ce3+), exhibiting st...
In this work, an aluminate silicate garnet phosphor, Y2Mg2Al2Si2O12:Ce3+ (YMASG:Ce3+), exhibiting st...
Phosphor-in-glass (PiG) film is a promising luminescent material in high-brightness laser lighting f...
Abstract: Recently, remote phosphor is reported for white LED enhancing of phosphor efficiency compa...
We demonstrate the possibilities offered by the screen-printing technique to create thick layers of ...
A phosphor-in-glass (PiG) with red and green phosphors using Nd-doped glass as a host matrix was fab...
Phosphor-in-glass (PiG) thick film was fabricated on a borosilicate glass substrate using a conventi...
Y3Al5O12:Ce3+ phosphor-in-glass (PiG) thin film on soda-lime silicate glass substrate has been appli...
A low sintering temperature glass based on the SiO2?P2O5?ZnO?B2O3?R2O (R=K and Na) system was studie...
Phosphor-in-glass (PiG) color converters for LED applications were fabricated with a mixture of phos...
A critical step in providing better phosphor solution for white light emitting diode (LED) is to uti...
Phosphor-in-glass (PiGs) is one of the most important strategies to overcome thermal influence in hi...
With the use of phosphor-in-glass (abbreviated as PiG), it is possible to make alterations for the r...
As a next-generation high-power lighting technology, laser lighting has attracted great attention in...
Phosphor-in-glasses (PiGs) with rare earth (RE) doped SiO2-B2O3-RO glasses were prepared by embeddin...
In this work, an aluminate silicate garnet phosphor, Y2Mg2Al2Si2O12:Ce3+ (YMASG:Ce3+), exhibiting st...
In this work, an aluminate silicate garnet phosphor, Y2Mg2Al2Si2O12:Ce3+ (YMASG:Ce3+), exhibiting st...
Phosphor-in-glass (PiG) film is a promising luminescent material in high-brightness laser lighting f...
Abstract: Recently, remote phosphor is reported for white LED enhancing of phosphor efficiency compa...
We demonstrate the possibilities offered by the screen-printing technique to create thick layers of ...
A phosphor-in-glass (PiG) with red and green phosphors using Nd-doped glass as a host matrix was fab...