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Job Description The successful candidate will work with Assoc Prof Chua Lay Lay on Synthesis and characterization of electronic-grade organic semiconductors materials for sustainable devices such as
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of static, dynamic and reliability characteristics, models for electronic packaging, circuit (e.g. interconnects such as wirebonds, solder joints and PCB), and semiconductor devices (e.g. SiC-MOSFET, GaN-HEMT
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, design, fabrication and testing of semiconductor optical amplifier (SOA) as a gain medium for integrated photonics. Key Responsibilities: Modelling of novel gain medium compatible with Si-based integrated
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, materials science, electrical engineering, chemical engineering, or similar field with strong hands-on experience in perovskite, organic, and inorganic semiconductors, thin-film processing and device
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, materials science, electrical engineering, chemical engineering, or similar field with strong hands-on experience in perovskite, organic, and inorganic semiconductors, thin-film processing and device
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investigate their electrical and optical response to radiation as both semiconductor and scintillator radiation detectors. The structural quality and composition of the materials will be investigated using
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method pioneered within SOLARIS by members of the Semiconductor Physics group. The materials systems will be focused towards mixed ionic/electronic conducting oxygen/steam electrodes for proton ceramic
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to the project. This is a novel method pioneered within SOLARIS by members of the Semiconductor Physics group. The materials systems will be focused towards mixed ionic/electronic conducting oxygen/steam