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Professor Cole’s current work on corrosion focuses on the discovery of new inhibitors & microbially induced corrosion (MIC). The inhibitor work combines computational modelling with rapid experimentation, via robotic electrochemistry, to define the molecular features that promote effect inhibition and then to use these features to scan databases for new potential inhibitors. The MIC research is focused on new laboratory methods to replicate accurately the conditions that occur in service (currently for components embedded in soil), and on innovative methods such as Quorum Sensing Inhibitors to restrict biofilm growth. Parallel to this work, the RDF Team has a strong focus on the biocompatibility & degradation of human implants.
His work on additive manufacturing has two components. The first aims to integrate in-situ sensing & modelling of metal additive manufacturing to built virtual replicas of the same process that guide process settings & process feedback to maximize the quality of builds. The second studies the quality & biocompatibility of additive surfaces in order to estimate & improve the component functionality in service. The nanostructure work is focused on the design & fabrication of nano-dots whose surface properties are optimized for fluorescence-based sensing and catalytic reactions. The application of the nanostructure work is in both the environmental & biomedical domain.
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MOLECULAR SYSTEMS DESIGN & ENGINEERING (2024)
Qiushi Deng, Jose Maria Castillo-Robles, Ernane de Freitas Martins, Pablo Ordejon, Jan-Niclas Gorges,Philipp Eiden,Xiao-Bo Chen,Patrick Keil,Ivan Cole
The Science of the total environment (2024): 171231-171231
Qiushi Deng,Steffen Jeschke, Ratan K. Mishra,Sebastian Spicher, Samir Darouich, Eduard Schreiner,Philipp Eiden,Peter Deglmann,Xiao-Bo Chen,Patrick Keil,Ivan Cole
Journal of Nanosciences Research & Reportsno. 2 (2024): 1-4
Inorganicsno. 4 (2024): 96
ADVANCED ENGINEERING MATERIALSno. 8 (2023)
2023 45th Annual International Conference of the IEEE Engineering in Medicine & Biology Society (EMBC) (2023): 1-4
NANOMATERIALSno. 14 (2023): 2103-2103
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CoRR (2023): 89-95
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