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The University of Amsterdam invites applications for a PhD candidate position in the Soft Matter cluster of the IoP-WZI. The research will investigate the effectiveness of damp-proofing products across multiple length scales using advanced imaging and chemical analysis.
You will work in a vibrant, international environment, contributing to teaching activities and collaborating with leading experts in crystallization and porous media.
Rising damp from groundwater represents a critical threat to buildings worldwide. Some building-preservation treatments (most of the times polymers) are used to reduce rising damps that is the moisture uptake from the ground moving upward through porous brick, stone, or mortar by capillary action. These treatments are supposed to create a water-repellent zone in order to interrupt upward moisture transport.
However, the fundamental mechanisms governing the spreading and polycondensation at the microscale, and thus the effectiveness, of such treatments in porous building materials remain largely unexplored. Critical knowledge gaps exist regarding the multiscale behaviour of these treatments, from microscale pore interactions to macroscale building performance.
This project will advance beyond the state of the art by elucidating for the first time the dynamics of spreading and polycondensation of chemical damp proofing products by real-time visualization of these processes at the pore scale. You will use novel experimental methods developed in our laboratory by combining fluorescent viscosity-sensitive probes and confocal/infrared microscopy with mechanical measurements to correlate the microscale of pore interaction to the macroscale behaviour.
Together with a diverse stakeholders group, including chemical product manufacturers, governmental conservation agencies, building asset owners, and contractors, and in collaboration with TU Delft (the Architecture Department) we will establish the knowledge and tools to improve the effectiveness of chemical damp proofing interventions and significantly reduce the estimated €19 million annual costs of chemical treatments in the Netherlands.
Your research will be part of the Soft Matter cluster at the Van der Waals-Zeeman Institute for Experimental Physics (IoP-WZI) at the University of Amsterdam, under the supervision of Prof. Noushine Shahidzadeh (expert on crystallization and sol-gel process in confinement) and Prof. Hannelore Derluyn (expert in micro-CT 3D imaging for porous media).
You will conduct pioneering research combining advanced imaging techniques with experimental characterization to elucidate the effects of different variables on the effectiveness of chemical damp proofing products, with the final goal of increasing the success of such barrier treatments against rising damp in (historic) masonry.
You will Study
Your core responsibilities include:
Your experience and profile:
It is a preference if you additionally have:
We offer a temporary contract for 38 hours per week for the duration of 4 years (the initial contract will be for a period of 18 months and after satisfactory evaluation it will be extended for a total duration of 4 years).
Thegross monthly salary, based on 38 hours per week ranges between €3,204 to €4,051 (Scale P). This does not include 8% holiday allowance and 8.3% year-end allowance. The UFO profile PhD candidate is applicable.
A favourable tax agreement, the 30% ruling, may apply to non-Dutch applicants.
The preferred starting date is as soon as possible (to be discussed).
This employment should lead to a dissertation (PhD thesis). We will draft an educational plan that includes attendance of courses and international meetings. We also expect you to assist in teaching undergraduates and master students.
Additional benefits:
The Collective Labour Agreement of Universities of the Netherlands is applicable.
The Faculty of Science has a student body of around 8,000, as well as 1,800 members of staff working in education, research or support services. Researchers and students at the Faculty of Science are fascinated by every aspect of how the world works, be it elementary particles, the birth of the universe or the functioning of the brain.
The Institute of Physics (IoP) of the University of Amsterdam is located in the centre of the Amsterdam Science Park. The IoP—as part of the Faculty of Science—is housed in a modern building with excellent labs and technical facilities. Surrounded by several national research institutes and with our partners at the Vrije Universiteit (VU Amsterdam), the institute is part of a strong physics centre of international standing.
The Van der Waals-Zeeman Institute for Experimental Physics (IoP-WZI) is part of the IoP and home to three research clusters: Quantum Gases & Quantum Information (QGQI), Quantum Materials (QMat), and Soft Matter (SM).
You will be based in the Soft Matter cluster, working in Prof. Shahidzadeh's research group crystallization and self- assembly; The Soft Matter group at the University of Amsterdam is a large, internationally visible team embedded in the Van der Waals–Zeeman Institute at the UvA Institute of Physics that focuses on complex fluids and soft mesoscopic materials, both experimentally and computationally. There are strong links with soft condensed‑matter theory and computational chemistry on topics like rare events, self‑assembly and crystallization , and active soft matter. The group of Prof. Noushine Shahidzadeh has been also active in the cultural heritage field for more than 15 years through European JPI calls, RILEM technical committees, and NWO Crossover calls. (please visit our website Soft Matter Group – Institute of Physics).
This project represents a unique collaboration between Prof. Noushine Shahidzadeh (experimental soft matter and crystallization mechanisms) and Prof. Hannelore Derluyn (Professor by special appointment at IoP-WZI, expert in micro-CT 3D imaging of porous materials). Short research stays at the DMEX Centre for X-ray Imaging in Pau, France, are foreseen to conduct micro-CT experiments. The study will provide novel insights for the improvement of the effectiveness of chemical damp proofing interventions used worldwide.
Do you want to know more about our organisation? Read more about working at the University of Amsterdam.
Are you fascinated by the intersection of Physics, Chemistry and materials science? Do you want to contribute to protecting monuments including World Heritage Sites from degradation caused by rising damp?
The Institute of Physics at the University isseeking an ambitious PhD candidate to investigate the effectiveness of damp-proofing products across multiple length scales.
Rising damp from groundwater represents a critical threat to buildings worldwide. Some building-preservation treatments (most of the times polymers) are used to reduce rising damps that is the moisture uptake from the ground moving upward through porous brick, stone, or mortar by capillary action. These treatments are supposed to create a water-repellent zone in order to interrupt upward moisture transport.
However, the fundamental mechanisms governing the spreading and polycondensation at the microscale, and thus the effectiveness, of such treatments in porous building materials remain largely unexplored. Critical knowledge gaps exist regarding the multiscale behaviour of these treatments, from microscale pore interactions to macroscale building performance.
This project will advance beyond the state of the art by elucidating for the first time the dynamics of spreading and polycondensation of chemical damp proofing products by real-time visualization of these processes at the pore scale. You will use novel experimental methods developed in our laboratory by combining fluorescent viscosity-sensitive probes and confocal/infrared microscopy with mechanical measurements to correlate the microscale of pore interaction to the macroscale behaviour.
Together with a diverse stakeholders group, including chemical product manufacturers, governmental conservation agencies, building asset owners, and contractors, and in collaboration with TU Delft (the Architecture Department) we will establish the knowledge and tools to improve the effectiveness of chemical damp proofing interventions and significantly reduce the estimated €19 million annual costs of chemical treatments in the Netherlands.
Your research will be part of the Soft Matter cluster at the Van der Waals-Zeeman Institute for Experimental Physics (IoP-WZI) at the University of Amsterdam, under the supervision of Prof. Noushine Shahidzadeh (expert on crystallization and sol-gel process in confinement) and Prof. Hannelore Derluyn (expert in micro-CT 3D imaging for porous media).
You will conduct pioneering research combining advanced imaging techniques with experimental characterization to elucidate the effects of different variables on the effectiveness of chemical damp proofing products, with the final goal of increasing the success of such barrier treatments against rising damp in (historic) masonry.
You will Study
Your core responsibilities include:
Your experience and profile:
It is a preference if you additionally have:
We offer a temporary contract for 38 hours per week for the duration of 4 years (the initial contract will be for a period of 18 months and after satisfactory evaluation it will be extended for a total duration of 4 years).
Thegross monthly salary, based on 38 hours per week ranges between €3,204 to €4,051 (Scale P). This does not include 8% holiday allowance and 8.3% year-end allowance. The UFO profile PhD candidate is applicable.
A favourable tax agreement, the 30% ruling, may apply to non-Dutch applicants.
The preferred starting date is as soon as possible (to be discussed).
This employment should lead to a dissertation (PhD thesis). We will draft an educational plan that includes attendance of courses and international meetings. We also expect you to assist in teaching undergraduates and master students.
Additional benefits:
The Collective Labour Agreement of Universities of the Netherlands is applicable.
The Faculty of Science has a student body of around 8,000, as well as 1,800 members of staff working in education, research or support services. Researchers and students at the Faculty of Science are fascinated by every aspect of how the world works, be it elementary particles, the birth of the universe or the functioning of the brain.
The Institute of Physics (IoP) of the University of Amsterdam is located in the centre of the Amsterdam Science Park. The IoP—as part of the Faculty of Science—is housed in a modern building with excellent labs and technical facilities. Surrounded by several national research institutes and with our partners at the Vrije Universiteit (VU Amsterdam), the institute is part of a strong physics centre of international standing.
The Van der Waals-Zeeman Institute for Experimental Physics (IoP-WZI) is part of the IoP and home to three research clusters: Quantum Gases & Quantum Information (QGQI), Quantum Materials (QMat), and Soft Matter (SM).
You will be based in the Soft Matter cluster, working in Prof. Shahidzadeh's research group crystallization and self- assembly; The Soft Matter group at the University of Amsterdam is a large, internationally visible team embedded in the Van der Waals–Zeeman Institute at the UvA Institute of Physics that focuses on complex fluids and soft mesoscopic materials, both experimentally and computationally. There are strong links with soft condensed‑matter theory and computational chemistry on topics like rare events, self‑assembly and crystallization , and active soft matter. The group of Prof. Noushine Shahidzadeh has been also active in the cultural heritage field for more than 15 years through European JPI calls, RILEM technical committees, and NWO Crossover calls. (please visit our website Soft Matter Group – Institute of Physics).
This project represents a unique collaboration between Prof. Noushine Shahidzadeh (experimental soft matter and crystallization mechanisms) and Prof. Hannelore Derluyn (Professor by special appointment at IoP-WZI, expert in micro-CT 3D imaging of porous materials). Short research stays at the DMEX Centre for X-ray Imaging in Pau, France, are foreseen to conduct micro-CT experiments. The study will provide novel insights for the improvement of the effectiveness of chemical damp proofing interventions used worldwide.
Do you want to know more about our organisation? Read more about working at the University of Amsterdam.
Are you fascinated by the intersection of Physics, Chemistry and materials science? Do you want to contribute to protecting monuments including World Heritage Sites from degradation caused by rising damp?
The Institute of Physics at the University isseeking an ambitious PhD candidate to investigate the effectiveness of damp-proofing products across multiple length scales.