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【全獎】英國圣安德魯斯大學 Dr Renald Schaub招收2025年博士生 (與愛丁堡大學合作)
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英國圣安德魯斯大學 (University of St Andrews)化學院 Dr Renald Schaub組擬招收一名2025博士生,本項目與愛丁堡大學Prof Eleanor Campbell合作 申請人可獲得本組提供的全額獎學金(學費+生活費)。 【物理化學,表面科學,光電,富勒烯】相關 本組目前主要應用低溫(4K)真空掃描隧道顯微鏡(LT-UHV-STM) 進行有關內嵌C60方面的研究,相關成果詳見https://www.nature.com/articles/s41467-019-10300-2/。 本組信息可見網頁 https://schaubgroup.wp.st-andrews.ac.uk/ 有意者請盡快聯(lián)系Dr Renald Schaub, (聯(lián)系方式:renald.schaub@st-andrews.ac.uk)并附上本人英文簡歷,學位證明,成績以及語言成績等材料。 如有疑惑或想要咨詢相關信息,也可在本貼下留言 招生信息: • 提供全獎獎學金(包括學費+生活費) • 指導導師: 圣安德魯斯大學化學院 Dr Renald Schaub 愛丁堡大學化學院 Prof Eleanor Campbell • 學位要求:化學/物理化學/材料相關專業(yè)的碩士學位 • 開始日期:2025年秋季 九月初 • 雅思要求:總分6.5,小分6.0 (此成績?yōu)槭グ驳卖斔够瘜W院入學語言要求) 課題內容如下: Endohedral Fullerene Molecular Switches Applications are invited for a talented and motivated PhD candidate to join our team at the University of St Andrews (Scotland, UK) working towards the understanding and development of multi-position molecular switches based on individual endohedral fullerene molecules and building on recent results with Li@C60 [1]. The project will involve a combination of experimental work (carried out by the PhD candidate) and theoretical calculations (by collaborators) to determine the conductance and switching mechanism within the endohedral molecules. The theoretical component of the project will be carried out by collaborators outwith the UK. The research is motivated by recent experimental studies in Edinburgh and St Andrews that have demonstrated a multi-way switch using Li@C60 deposited on a metal substrate. The position of the Li inside the fullerene cage can be manipulated by applying a voltage from an STM tip in a novel mechanism that is thought to be connected to the excitation of diffuse Rydberg-like molecular orbitals. As many as 14 different switch positions have been identified within a single molecule [1], far more than for conventional molecular switches. An increased understanding of the mechanism and further studies on the optimisation and control of the switching phenomenon in endohedral fullerenes could lead to the development of a highly promising nanoelectronics component. A suitable candidate will possess a first class or upper-second class undergraduate degree (Masters or equivalent) in chemistry, physics or materials science. A strong interest in advanced experimental techniques involving low temperature STM is essential. Other essential attributes are good presentation and communication skills, both written and oral. • The PhD studentship is fully funded (UK and international students welcome). • Supervisors: Dr Renald Schaub, School of Chemistry, University of St Andrews. Prof Eleanor Campbell, School of Chemistry, University of Edinburgh • Contact: renald.schaub@st-andrews.ac.uk • Web: https://schaubgroup.wp.st-andrews.ac.uk/ • Masters degree, first class or upper-second class (or equivalent) in chemistry, physics or materials science. • Start date: September or October 2025 (or sooner) • IELTS score of 6.5 or above, with a minimum score of 6.0 in every section. [1] H.J. Chandler, M. Stefanou, E.E.B. Campbell, R. Schaub, “Li@C60 as a multi-state molecular switch”, Nature Comm. 10 (2019) 2283. [2] E.S. Scougall, B. Anézo, Y. Tanuma, H.J. Chandler, C. Ewels, R. Schaub, E.E.B. Campbell, “Controlled High-Current-Induced Scanning Tunnelling Microscope Modification of C60”, Carbon 238 (2025) 120251. |
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