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My research interests focus on ceramic and interface research, namely the evolution of microstructure, and grain boundary networks and understanding this evolution as a result of changing external conditions, from deformation to reactions with the environment.
My research spans a wide range of challenges related to interfaces such as grain and phase boundaries in crystalline materials, from chemistry and physics to statistics of interface distributions and their adaptation during changing physical conditions. I combine experiments, state-of-the-art characterization, and theory to obtain a comprehensive understanding of the role of interfaces in geological and man-made materials for extreme condition applications as well as for the energy transition.
My recent focus has been on addressing fundamental scientific challenges that enable the design of new materials by tailoring their grain boundary populations and possibly accelerating our transition to a net-zero carbon society. Examples include (i) the role of interfaces to tailor interface properties, (ii) the role of grain boundaries in hard materials and materials for cladding in nuclear fusion reactors (iii) but also interfaces and their role in element partitioning in rocks. In my group, we also design new microstructures to enhance Na-Ion battery durability and performance, and (iv) develop new protocols for comprehensive characterization of the distribution of interfaces.
My research spans a wide range of challenges related to interfaces such as grain and phase boundaries in crystalline materials, from chemistry and physics to statistics of interface distributions and their adaptation during changing physical conditions. I combine experiments, state-of-the-art characterization, and theory to obtain a comprehensive understanding of the role of interfaces in geological and man-made materials for extreme condition applications as well as for the energy transition.
My recent focus has been on addressing fundamental scientific challenges that enable the design of new materials by tailoring their grain boundary populations and possibly accelerating our transition to a net-zero carbon society. Examples include (i) the role of interfaces to tailor interface properties, (ii) the role of grain boundaries in hard materials and materials for cladding in nuclear fusion reactors (iii) but also interfaces and their role in element partitioning in rocks. In my group, we also design new microstructures to enhance Na-Ion battery durability and performance, and (iv) develop new protocols for comprehensive characterization of the distribution of interfaces.
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Shobhit Pratap Singh,Christopher Thom,Lars Hansen,Katharina Marquardt,John Wheeler,Elisabetta Mariani,Julian Mecklenburgh
crossref(2023)
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTHno. 8 (2023)
Goldschmidt2022 abstracts (2022)
Geophysical Research Lettersno. 16 (2022)
crossref(2022)
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