Publisher
source

Prof J Carroll-Pöhls

1 year ago

Design of High-Performance Quantum Thermoelectrics using Experimental and Computational Techniques University of New Brunswick in Canada

Degree Level

PhD

Field of study

Biochemistry

Funding

Fully Funded

Deadline

Expired

Country flag

Country

Canada

University

University of New Brunswick

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Where to contact

Official Email

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Keywords

Biochemistry
Experimental Physics
Materials Science
Physical Chemistry
Computational Chemistry
Solid State Physics
X-ray Diffraction
Photosynthesis
Density Functional Theory
Biophysical Characterization
Scanning Electron Microscope
Thermoelectric Properties
Quantum Thermoelectrics

About this position

The Quantum Materials for Renewable Energy Applications Laboratory in the Department of Chemistry at the University of New Brunswick (UNB) is searching for a highly motivated doctoral student to design highly efficient quantum materials for thermoelectric materials. The position is fully funded, and the starting date is January, May or September 2025. Earlier starting dates might be possible and can be discussed. Note, the candidate can obtain a PhD in Chemistry or Physics.The project goals include (1) the computation of thermoelectric properties using advanced density functional theory (DFT), (2) the synthesis and characterization of quantum materials, and (3) the measurements of the thermoelectric properties.The student will learn to perform DFT calculations on large computer clusters and develop Python scripts to analyze the computed data. The computed data will be used to guide the experimental studies. The student will synthesize the samples using solid-state reactions and grow large single crystals using the Bridgman method. To optimize the thermoelectric properties, our laboratory has recently developed a script to efficiently optimize the materials. The samples will be characterized using X-ray diffraction techniques and scanning electron microscopy and the thermoelectric properties will be measured as a function of temperature.The student will disseminate their findings in high-impact journals and international conferences. During their training, the student will learn to efficiently communicate their work.Qualifications:A master’s degree in applied science (Chemistry, Physics, Materials Science) and engineeringAdvanced understanding of materials chemistry and physical propertiesStrong English communication skills in writing and speaking.Strongly recommended but not required.Computational backgroundExperimental background in materials synthesis and characterizationAdvanced knowledge of electrical and thermal propertiesFor more information, please go to https://www.carrollpohlslab.com.Please submit the following items: (1) curriculum vitae (as PDF), (2) cover letter (as PDF/or email), (3) copy of university transcript/diplomas, (4) copy of documents confirming English proficiency (TOEFL, IELTS or IELTS etc.; please see accepted English language proficiency minimum scores for direct entry into academic programs at UNB https://www.unb.ca/international/admission/ an (5) the contact details of two references.Application deadline: August 31st, 2024 or until filled.

Funding details

Fully Funded

How to apply

? Visit https://www.carrollpohlslab.com

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