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Organic Chemistry (power) PhD Projects, Programs & Scholarships

We have 6 Organic Chemistry (power) PhD Projects, Programs & Scholarships

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  Development of Novel Functional Intermediate Layers for Power Electronics Integration - Ref: CL2UF2018
  Prof C Liu
Application Deadline: 3 May 2020

Funding Type

PhD Type

Power electronics are widely used in electric and hybrid vehicles (EHV), aerospace crafts, renewable power components and traction control systems.
  Advanced manufacturing processes to enable the heterogeneous integration of power electronics - Ref: CL1UF2018
  Prof C Liu
Application Deadline: 3 May 2020

Funding Type

PhD Type

Heterogeneous integration of power devices refers to the assembly of separately manufactured power semiconductors, passive components and control elements into a single package, i.e.
  Novel nanostructured materials for distinguishing molecules and ions with small size difference
  Dr Y Huang
Application Deadline: 10 February 2020

Funding Type

PhD Type

All across the world, people are facing a wealth of new and challenging problems, particularly the energy and environmental issues.
  PhD Studentship – Synthesis of new Chromophors to use in Optoelectronic applications
  Dr R Rios Torres
Application Deadline: 31 August 2019

Funding Type

PhD Type

Gas sensing plays a key role in enabling many different technologies used to monitor the emissions from different sources. Photonic gas sensors exhibit unique advantages of building a CMOS-compatible, cost-effective, and portable sensing system fully integrated on a single chip.
  Deep ultraviolet LED devices for few-photon optical communications and imaging
  Prof M Dawson, Dr J Herrnsdorf
Application Deadline: 31 August 2019

Funding Type

PhD Type

Start date. October 2019. Duration. 3.5 yrs. Background. Conventional optical communications is based on fibre-optic networks operating in the near-infrared.
  Synthesis of medicinally important macrocycles via Successive ring expansion
  Dr W Unsworth
Applications accepted all year round

Funding Type

PhD Type

Traditionally, medium sized rings and macrocycles are made by forming a chemical bond between the two ‘ends’ of a long linear molecule (A), but competing side reactions and/or dimerisation reactions usually dominate in such processes, leading to inefficient reaction processes.
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