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A stack of cubes with different color dots in the center. These are an analogy to how ordered materials could be constructed with our research.

Our efforts are focused on establishing experimental methods for creating designed nanomaterial systems through self-organization. We integrate nanoparticles, biomolecules and polymers into unified systems to take advantage of their unique properties, and to exploit the emergent phenomena. Using tailored nano-structures, molecular recognitions, and macromolecular plasticity, we investigate how to build designed nanoscale systems with precise architectures, re-configuration properties, and the ability to react and process energy.

Our lab develops platform approaches for digitizing bottom-up nano-fabrication, and enabling dynamic control and animation of material systems. The lab explores applications of novel self-assembled nanomaterials for targeted functions, from optics to nanomedicine, and from catalysis to signal processing.