PhD Studentship: Computational Chemistry Driven Design of Improved Thermal Batteries

University of Birmingham

Birmingham

On-site

GBP 20,000 - 24,000

Full time

11 days ago
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Benefits offered by this job

Fully funded PhD studentship
Tax-free stipend £21,805 and fees £5,?

Job summary

University of Birmingham invites applications for an industrially sponsored PhD studentship to use state-of-the-art computational chemistry techniques to understand structure–property relationships in thermal batteries and to guide design of new materials.

The successful applicant will have a 2.1 honours or equivalent and demonstrate motivation, analytical and creative thinking, plus strong English writing and presentation skills.

Qualifications

  • At least a 2.1 honours or equivalent at Bachelors or Masters in Chemistry, Physics, Materials Science or related field.
  • Strong analytical and creative thinking abilities.
  • Good English writing and presentation skills; background in interdisciplinary research is desirable.

Responsibilities

  • Carry out computational chemistry studies to understand structure–property relationships in thermal batteries and guide design of new materials.

Skills

Analytical thinking
Creative thinking
Self-motivation

Education

2.1 honours or equivalent

Tools

Computer modelling

Job description

Thermal batteries (often termed primary reserve batteries) offer several key advantages over primary and secondary batteries due to their long shelf life, high temperature stability, quick activation, reliability, robustness and the fact that they are maintenance-free. Despite these many advantages, the exact mechanisms that control performance in industrially utilised thermal batteries has remained unclear for decades, and thus design principles for discovering new thermal battery materials have been lacking. In this industrially sponsored PhD studentship, we have partnered with AWE fund a 3.5-year Computational Project to use state-of-the-art Computational Chemistry techniques to understand structure-property relationships in thermal batteries, and to derive new understanding to guide design of new and improved thermal battery materials.

The successful applicant should have or expect to achieve at least a 2.1 honours or equivalent at Bachelors or Masters level in Chemistry, Physics, Materials Science, or a related discipline. The successful applicant will demonstrate strong interest and self-motivation in the subject and the ability to think analytically and creatively. Good computer skills, plus good presentation and writing skills in English, are required. Previous research experience in contributing to a collaborative interdisciplinary research environment is highly desirable but not necessary as training will be provided. Experience of computer modelling is desirable but not essential as full training will be provided in an active and well-resourced research group based in brand new state-of-the-art Chemistry laboratories at the rapidly growing University of Birmingham. Please visit our group website for more details about our research: http://davidscanlon.com/

The School of Chemistry is keen to achieve a gender and diversity balance across the School and welcome applicants from all backgrounds. The School holds an Athena SWAN Bronze Award, which recognises its work in promoting women’s careers in science, technology, engineering, mathematics and medicine (STEM). Applications will be accepted until 31 May 2024 but the position will be filled as soon as an appropriate candidate is found.

Funding notes:

This studentship is fully funded for 3.5 years and includes a tax‑free annual stipend (currently £21,805) and fees (currently £5,238) at the UK home rate. DUE TO FUNDING RESTRICTIONS, THIS STUDENTSHIP IS ONLY OPEN TO APPLICANTS WHO QUALIFY FOR THE UK HOME FEES RATE.

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