Rajmund Mokso
Papers
1
Total Citations
30
H-Index
1
About
Rajmund Mokso is a leading experimental physicist whose research centers on the development and application of advanced X-ray tomographic microscopy, particularly for studying dynamic processes in porous media and materials science. His most-cited work, "Microstructure characteristics during hydrate formation and dissociation revealed by X-ray tomographic microscopy" (2012, 30 citations), exemplifies his pioneering contributions to real-time, high-resolution imaging of complex multiphase systems. Mokso’s expertise lies in pushing the boundaries of synchrotron-based X-ray imaging, enabling researchers to visualize microstructural evolution—such as gas hydrate formation and dissociation—with unprecedented temporal and spatial resolution. His work has been instrumental in revealing the intricate pore-scale mechanisms that govern fluid transport, phase transitions, and mechanical behavior in natural and engineered materials. Beyond this landmark study, Mokso has contributed to the development of fast X-ray imaging techniques and beamline instrumentation, significantly advancing the capabilities of time-resolved tomography. His research has profound implications for energy recovery, carbon sequestration, and fundamental understanding of porous media dynamics. With a growing citation impact, Mokso continues to shape the field of in situ X-ray microscopy, inspiring new generations of scientists to explore the hidden dynamics of matter at the microscale.
Research Focus
Key Achievements
Top Papers
- 1