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PhD Degree (05)-Fully Funded at EMPA, Zurich, Switzerland

EMPA, Zurich, Switzerland invites online Application for number of  Fully Funded PhD Degree at various Departments. We are providing a list of Fully Funded PhD Programs available at EMPA, Zurich, Switzerland.

Eligible candidate may Apply as soon as possible.

 

(01) PhD Degree – Fully Funded

PhD position summary/title: PhD Position in Graphene Nanoribbon Quantum Devices

The student will commission and operate a dedicated UHV dry-transfer platform and assemble graphene/GNR heterostructures combining atomically precise nanoribbons with graphene electrodes and atomically thin dielectrics. The work combines advanced instrumentation, 2D-material assembly, Raman spectroscopy, and low-temperature STM/STS. A central goal is to investigate how interfaces and electrostatic environments influence the electronic and spin properties of transferred GNRs, progressing from robust armchair GNRs to reactive zigzag-edged and topological nanoribbons hosting correlated quantum states.

Deadline : Open until filled

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(02) PhD Degree – Fully Funded

PhD position summary/title: PhD position on the “Data-Driven Development of Novel Piezoelectric Thin Films for Electronic, Photonic and Quantum Technologies”

Piezoelectric materials are essential building blocks of many technologies we use every day. They power the frequency filters for 5G and WiFi communication and provide accurate motion and sensing at the smallest length scales. The growing need for highly integrated micro-electro-mechanical systems (MEMS) necessitates the development of novel piezoelectric thin films. This research project focuses on the development of piezoelectric nitrides (e.g. AlScN) using reactive high-power impulse magnetron sputtering (HiPIMS). 

The project will make use of a unique laboratory which combines state-of-the-art physical vapor deposition with surface analysis and closed-loop autonomous experimentation.
The goals of the project are to develop highly efficient piezoelectric thin films, but also to leverage large data sets to improve our fundamental understanding of the synthesis-structure-property relationships in these polar nitride materials.
This is an exciting project at the intersection of materials science, physics and data science, offering ample opportunities for growth and professional development.

Deadline : Open until filled

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(03) PhD Degree – Fully Funded

PhD position summary/title: PhD Position on the atmospheric science of emerging plastic aerosol particles

Micro- and nano-sized plastic particles (MPs and NPs, collectively called MNPs) are an emerging global concern because of their detrimental effects on the environment, ecosystems, and human health. This highlights an urgent need to track their footprints in the atmosphere which plays a key role in their lifetime in the environment. This PhD project aims to examine the atmospheric aging and in-cloud scavenging processes of micro- and nano-sized plastic particles through laboratory studies.

Deadline : Open until filled

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(04) PhD Degree – Fully Funded

PhD position summary/title: PhD position on Subtyping dementia at the nanoscale

This interdisciplinary PhD project combines atomic force microscopy, fluorescence microscopy, chemical spectroscopy, biophysics and data analytics. The PhD student will be required to conduct experiments in the field of biophysics using nanoscale imaging techniques (atomic force microscopy) and chemical spectroscopy (fluorescence imaging and infrared spectroscopy) based analytics of proteins implicated in dementia and related pathologies. The results from these studies will be prepared as manuscripts and submitted to peer reviewed journals for publication. As part of the PhD research project the student will be required to attend conferences to present the scientific results.

Deadline : Open until filled

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(05) PhD Degree – Fully Funded

PhD position summary/title: PhD Position in Operational Feasibility and Robustness of AI- and Multifractal-Inspired Urban Energy Systems

The focus of this PhD position is to assess the operational feasibility and robustness of urban energy system designs emerging from AI- and multifractal-informed planning approaches. The PhD will develop and apply optimization-based energy system models to analyse whether spatially coherent urban and energy configurations can be operated efficiently under realistic physical, spatial, and infrastructural constraints. 

The work aims to identify feasible operating patterns for electricity and heating systems at the district and urban scale, and to study how spatial characteristics and uncertainty (e.g. demand evolution, renewable generation) influence system performance and trade-offs. The research will combine analytical modelling with data-driven and AI-based methods, for example for scenario generation or uncertainty exploration. 
The PhD will work with synthetic test cases and real urban case studies in Switzerland and France, in close collaboration with partners of the FRACNET-CITY consortium.

Deadline : Open until filled

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About Swiss Federal Laboratories for Materials Science and Technology (EMPA), Zurich, Switzerland – Official Website

The Swiss Federal Laboratories for Materials Science and Technology is an interdisciplinary Swiss research institute for applied materials sciences and technology. As part of the Swiss Federal Institutes of Technology Domain, it is an institution of the Swiss federation. For most of the period since its foundation in 1880, it concentrated

 

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