Publications by authors named "His-Yu Feng"

Article Synopsis
  • The study examines how adding colloidal quantum dots (QDs) and Ag nanoparticles (NPs) into nanoscale cavities on a GaN template can boost color conversion performance in displays.
  • By leveraging surface plasmon (SP) coupling and Förster resonance energy transfer (FRET), the research shows improved emission efficiency from QDs and enhanced energy transfer from quantum wells (QWs) to QDs.
  • Results indicate that the nanoscale-cavity effect not only increases QD emission but also enhances the overall color conversion efficiency, confirmed by both experimental and simulation data.
View Article and Find Full Text PDF

To improve the color conversion performance, we study the nanoscale-cavity effects on the emission efficiency of a colloidal quantum dot (QD) and the Förster resonance energy transfer (FRET) from quantum well (QW) into QD in a GaN porous structure (PS). For this study, we insert green-emitting QD (GQD) and red-emitting QD (RQD) into the fabricated PSs in a GaN template and a blue-emitting QW template, and investigate the behaviors of the photoluminescence (PL) decay times and the intensity ratios of blue, green, and red lights. In the PS samples fabricated on the GaN template, we observe the efficiency enhancements of QD emission and the FRET from GQD into RQD, when compared with the samples of surface QDs, which is attributed to the nanoscale-cavity effect.

View Article and Find Full Text PDF

To further enhance the color conversion from a quantum-well (QW) structure into a color-converting colloidal quantum dot (QD) through Förster resonance energy transfer (FRET), we designed and implemented a device structure with QDs inserted into a GaN nano-porous structure near the QWs to gain the advantageous nanoscale-cavity effect. Additionally, surface Ag nanoparticles were deposited for inducing surface plasmon (SP) coupling with the QW structure. Based on the measurements of time-resolved and continuous-wave photoluminescence spectroscopies, the FRET efficiency from QW into QD is enhanced through the SP coupling.

View Article and Find Full Text PDF