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RESEARCH AREAS

1. Integration of current micro/nanoelectromechanical systems (M/NEMS) with infrared (IR) spectroscopy to create highly sensitive and selective sensors and materials characterization platforms.

2. Development of novel nano-metrologies based on scanning probe microscopy (SPM) that enables the multi-physical and chemical material property characterization for energy,Ìýenvironment, and biomedicalÌýapplications.

3. Novel synthesis of metal organic frameworks (MOFs) and functionalized MOFs nanocomposites for various physical/chemical/biological sensing and carbon capture/conversion/utilization applications.

4.ÌýTheoretical, numerical,Ìýand experimental study of multi-scaleÌýfluid-structure interaction phenomena for physical/chemical/biological sensing applications.

5. Additive manufacturing of polymer-derived ceramics.

6. Quantum materials for new sensing devices.

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