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  Research Fellows And Research Projects  
  Project abstracts can be viewed from the CD-ROM which is enclosed or the SMA website (http://www.sma.nus.edu.sg).  
     
  AMM&NS Programme HPCES Programme IMST Programme MEBCS Programme  
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  AMM&NS Programme  
     
 
DR CHEN ZHEN
Expertise: III-nitride materials and devices characterization and fabrication
     
GaN-Based White LED Research and Fabrication
     
Project Advisor
(Singapore)
:
Prof Chua Soo Jin
     
Project Advisor (MIT) :
Prof Eugene A. Fitzgerald
     
Duration :
October 2002 to October 2004
     
 
 

Project Abstract:

The current applications of the white LED include the instrument panels of motor vehicles and LCD backlighting. Its main goal is to increase the level of luminosity allowing replacement for incandescent lamp because LEDs are smaller, higher efficiency, and live about 50 times longer compared to ordinary light bulbs. The different methods are put forward to incorporate the various emission-band layers into one chip in order to produce the white LED which will be cheaper, more convenient and more stable. Various physical principles, such as the peak redshift by piezoelectric field, the impurity emission and the emission from InGaN with various compositions, will be used to obtain the whole visible spectrum.

 
     
 
Study of the ZnO-GaN Nanostructures
     
Project Advisor
(Singapore)
:
Prof Chua Soo Jin
     
Project Advisor (MIT) :
Prof Eugene A. Fitzgerald
     
Duration :
October 2003 to October 2004
     
 
 

Project Abstract:

GaN-based materials and devices are widely applied in blue/green, UV optical and electronic devices. The GaN group, headed by Prof Chua Soo Jin has fabricated the UV/ visible LEDs and is equipped with facilities for the III-nitride materials growth, characterization and device processing. This piece of work is done in collaboration with IMRE and chemistry department. Assoc Prof Loh Kian Ping’s group in the chemistry department has fabricated ZnO and BN nanostructure on different substrates with various growth methods. This project will combine the strength of both groups to grow AlGaInN / ZnO and AlInGaN / BN hetero-nano structures with the aim of achieving highly efficient visible LEDs. AlGaInN/ZnO and AlGaInN/BN structures can be used to fabricate novel high efficiency light emitting devices because of the much larger active area which can be obtained when using nano-hetero-structure as active layer compared with the ordinary planar devices. Furthermore, The AlInGaN/BN and AlInGaN/ZnO will have many novel properties due to the low dimensional structures. These properties will be investigated in this project.

 
     
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