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Sustainable Built Environment

Design Computation

Modelling and Design of Thermal Energy
Harvesting Device

PI: Ricky Ang
 To study both theoretically the detailed
interaction between photons, electrons and
phonons, in order to control their interaction
and to improve the energy conversion process
 To improve the efficiency of thermionic
convertor:




Using new methods and new materials
Limitation of Space charge effects on the
performance

Applications of thermal conversion progress at
400K for power generation in engine and a
cooling method to keep things at 10 to 100K
Modelling and Design of Thermal Energy
Harvesting Device
Using new materials: single-layer graphene


Over barrier side-band electron emission from graphene using time
varying potential




2

Published in Carbon, 61, page 294-298 (2013) [2012 IF = 5.868]
By Shijun Liu and L. K. Ang [Key note oral in IVEC May 21-23, 2013, Paris]
Invitation in IEEE Transaction on Electron Device [2012 IF = 2.062]

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Modelling and design of thermal energy harvesting device

  • 1. Sustainable Built Environment Design Computation Modelling and Design of Thermal Energy Harvesting Device PI: Ricky Ang  To study both theoretically the detailed interaction between photons, electrons and phonons, in order to control their interaction and to improve the energy conversion process  To improve the efficiency of thermionic convertor:    Using new methods and new materials Limitation of Space charge effects on the performance Applications of thermal conversion progress at 400K for power generation in engine and a cooling method to keep things at 10 to 100K
  • 2. Modelling and Design of Thermal Energy Harvesting Device Using new materials: single-layer graphene  Over barrier side-band electron emission from graphene using time varying potential    2 Published in Carbon, 61, page 294-298 (2013) [2012 IF = 5.868] By Shijun Liu and L. K. Ang [Key note oral in IVEC May 21-23, 2013, Paris] Invitation in IEEE Transaction on Electron Device [2012 IF = 2.062]