太赫兹技术用于下一代电池的博士职位
PhD Studentship: Powering the Future: Terahertz Technology for Next-Generation Batteries
原帖优先:申请材料、截止时间与资格以原帖和学校官方说明为准。
AI 中文速览
- 研究内容
- 开发先进的太赫兹光谱技术,用于下一代固态电池的可扩展制造
- 申请条件
- 良好的2.1学士或硕士学位,电子、化学工程、应用物理、物理科学或等同领域
- 待遇
- 全额奖学金,含税前津贴£21,805,研究培训支持金£5,000
- 申请方式
- 有意者应提交完整的正式申请,点击上方的'Apply'按钮获取指导和申请表格。
- 材料清单
- 学士或硕士学位证书
- 成绩单
- 个人陈述
由 @cf/meta/llama-3.3-70b-instruct-fp8-fast 生成,博士岗判定置信度 90%。
结构化信息
- 截止
- (Europe/London) 剩 23 天
- 学科
- 能源
- 合同类型
- 雇佣合同
- 原文薪资
- GBP 21,805 / 年(税前)
- 税后月薪(估)
- ¥13,700;房租后 ¥5,400
- 估算假设
- 单身、无子女、雇佣合同的粗略估算,以学校 offer 为准;扣除率 18%;汇率日期 2026-10-01
- 原帖发布
- 本站收录
- 内容更新
- 来源
- jobs.ac.uk(英国博士项目及学术招聘) · 最近核对 2026-10-05
判定依据(原文摘录)
- is_phd
PhD Studentship
- english_ok
The award will cover the full tuition fees, plus a tax-free stipend
- bachelor_ok
The candidate should have a good 2.1 Bachelors, or Masters degree
原文
From electric vehicles to grid-scale energy storage, the future of clean energy relies on breakthroughs in battery technology. This PhD will develop cutting-edge terahertz spectroscopy methods to unlock scalable manufacturing of next-generation solid-state batteries.
The project:
Solid-state electrolytes are attracting growing interest for next-generation solid-state batteries due to their improved thermal stability, reduced flammability, enhanced durability, and potential for higher energy density. However, manufacturing high-performance electrolytes remains challenging, as their microstructures must be carefully controlled and optimised to ensure good electrochemical performance, mechanical integrity, and impermeability. This challenge is compounded by the lack of rapid inspection methods capable of assessing microstructural homogeneity, which is increasingly important for product-scale electrolytes.
The PhD candidate will join a dynamic, interdisciplinary research team working at the interface of metrology, battery materials, and ceramic processing. Building on our previous demonstrations [1], this project will begin with the fabrication and characterisation of conventional electrolyte materials using emerging terahertz spectroscopy. The work will then progress to developing the technique further for measurements on product-scale electrolytes. In the later stages of the project, thermal control will be integrated to probe intrinsic conduction behaviour and link this to longer length-scale conductions, establishing a unified framework connecting microstructure and transport mechanisms.
In close collaboration with LiNa Energy, this project offers an exciting opportunity to contribute directly to innovations in solid-state battery manufacturing, advanced metrology, and quality control for next-generation energy storage devices.
[1] https://doi.org/10.1016/j.jpowsour.2024.234050
Scholarship:
The award will cover the full tuition fees, plus a tax-free stipend, currently £21,805, paid at the prevailing UKRI rate for 3.5 years of full-time study. The award also includes a £5,000 research training support grant.
Eligibility:
This studentship is available to home students only.
The candidate should have a good 2.1 Bachelors, or Masters degree in Electronic, Chemical Engineering, Applied Physics, Physical Sciences or equivalent.
Experience in more than one of the following topics will be a plus:
• Working knowledge of MATLAB/Python and signals processing
• Understanding of electromagnetics
• Genuine interest in battery technologies
• Experience with CAD and mechanical design
How to apply:
Interested candidates should submit a full formal application. Guidance and the application form available by clicking the 'Apply' button above. Candidates must fulfil the University of Warwick entry criteria and obtain an unconditional offer before commencing enrolment. Should your application for admission be accepted, you should be aware that notification of acceptance for the PhD does not constitute an offer of financial support. Successful scholarship candidates will receive official communication from the School of Engineering confirming their award.