Mimicking Nature: Controlling Charge, Heat, and Spin at Interfaces
California NanoSystems Institute, UCLA Center for Quantum Science & Engineering, and Departments of Chemistry & Biochemistry, Bioengineering, and Materials Science & Engineering, UCLA
Hosted by MIT.nano and Microsystems Technology Laboratories, MIT
Abstract
Paul S. Weiss (UCLA) explores low-energy interactions and balanced cycling in natural systems as models for efficient synthetic devices and recycling. Because the relevant energies fall below visible-photon energies, tunnelling spectroscopy and imaging are used to probe these processes. Replicating biochemical cycling and low-energy transport could reduce the energy needed for devices and materials recovery.
The work seeks missing physical principles, including spin conservation in chiral molecules and polarizability in biological and synthetic systems. This perspective has led to thermal-control advances in scale, speed and magnitude. Atomic-resolution imaging, spectroscopy and functional measurements help build precise structures while revealing heterogeneous nanoscale behaviour. The talk relates these advances to the physical, electronic, mechanical, thermal and chemical connections between materials and their surroundings that determine future nanomaterial measurements and devices.