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Guidelines for applicants can be found here. Appointment shall be in accordance with the collective labour agreement between the Danish Ministry of Finance and the Danish Confederation of Professional Associations.

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Molecules in Extreme Environments

Further information on qualification requirements and job content may be found in the Memorandum on Job Structure for Academic Staff at Danish Universities. Salary depends on seniority as agreed between the Danish Ministry of Finance and the Confederation of Professional Associations. All interested candidates are encouraged to apply, regardless of their personal background. Research activities will be evaluated in relation to actual research time. Thus, we encourage applicants to specify periods of leave without research activities, in order to be able to subtract these periods from the span of the scientific career during the evaluation of scientific productivity.

Aarhus University offers Relocation service to International researchers. You can read more about it here.

Centre for Science at Extreme Conditions | School of Engineering

Aarhus University is an academically diverse and research-intensive university with a strong commitment to high-quality research and education and the development of society nationally and globally. The university offers an inspiring research and teaching environment to its 39, students and 8, employees, and has an annual budget of EUR million Learn more at www. Furthermore studies of P,T structure-property relations of known materials will be used to gain deeper understanding.

The postdoc position focus on the continued development of high pressure methods for synthesis and characterization of materials at extreme conditions. Advanced materials of high current interest will be explored with a particular emphasis on topological insulators and perovskites with heavy transition elements.


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The successful candidate will engage with a strong team of collaborators covering expertise in theoretical calculations, data mining approaches and a range of highly specialized characterization techniques, such as ARPES, STM, magnetotransport measurements in high-field magnets, and more. Your profile Applicants should hold a PhD in chemistry, physics or nanoscience with a strong background in high-pressure methods, either synthesis, structural studies, or physical property measurements, ideally the candidate is familiar with more than one of the these topics.


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The successful candidate will be involved in beamtimes at international synchrotron facilities and prior experience with synchrotron-based science will be advantageous. You will be a core member of a research group with 14 students, 5 PhD students and 9 undergraduates. Experience with day-to-day supervision and practical training of students is desirable.

It is important for the project completion that the candidate has a flair for communication and like working in larger teams.

Ikke det rigtige job?

The department The Department of Chemistry at Aarhus University is in terms of scientific impact one of the leading European chemistry departments with research programs that range from medicinal chemistry to theoretical chemistry. It has a permanent staff of 28 full and associate professors, a support-staff of 26 people, PhD students and postdocs, and more than students The place of work is Department of Chemistry, Langelandsgade , Aarhus, and the area of employment is Aarhus University with related departments.

However, most elements and compounds in the universe exist under conditions of extremely high pressures, often combined with high temperatures, deep within the planets and stars. Under these conditions, new high-density crystal forms occur, species usually known only as molecules become dense covalent or ionic solids, and insulators and semiconductors become metals and even superconductors. Valency states and coordination numbers are changed, and it is expected that chemical bonding and reactivity is modified.

Paul McMillan describes how the field of condensed matter chemistry under extreme high pressure conditions now represents a vast new area to be explored.

10 Amazing Chemical Reactions Complication

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