Kim Group @ UW-Madison

Department of Mechanical Engineering, University of Wisconsin–Madison

Welcome

Our research asks a simple question: how can we make energy materials withstand damage and last longer? We study active materials used in systems ranging from batteries to nuclear reactors, where repeated operation can reshape the material’s microstructure and generate large internal stresses.

We focus on how defects and microstructural features influence where damage begins, how it spreads, and whether it remains manageable or leads to failure. Examples include electrochemo-mechanical degradation in solid electrolytes and helium embrittlement in irradiated metals. To uncover these mechanisms, we combine high-throughput atomistic modeling with autonomous materials synthesis and in operando microscopy and diffractometry.

Our goal is to use this understanding to design materials that are more durable, reliable, and sustainable for next-generation energy technologies.

Research Areas

News

Openings

We’re looking for curious and motivated PhD students to join us in Fall 2027! Experience with electrochemical experiments is a plus, but we welcome applicants from a wide range of backgrounds. Here are some useful links for anyone interested in joining the group: