Cambridge, MA

Mimicking Nature: Controlling Charge, Heat, and Spin at Interfaces (Joint with MIT.nano)

America/New_York (EDT)
until 1:00 PM
Building 34 · Cambridge

Mimicking Nature: Controlling Charge, Heat, and Spin at Interfaces (Joint with MIT.nano) takes place on Wed, Oct 7, 2026 at 12:00 PM (EDT) at Building 34 in Cambridge, MA, and runs until 1:00 PM. Prices are shown on the Calendar listing.

About this event

Paul S. Weiss explores how nature's low-energy processes inspire efficient synthetic systems. His research replicates biochemical cycling to develop scalable recycling and novel thermal control technologies. Visitors learn about atomic-scale imaging and the future of nanomaterials.

Full description from organizer

Abstract: Many interactions and processes in nature operate at low energy and with critical energy balance, enabling repeated cycling and highly efficient transport. Inspired by these processes, we try to understand them, and to replicate them in synthetic systems. The energies involved are well below those of visible photon energies; thus, we predominantly use tunneling spectroscopies and imaging to probe them. If we could replicate such systems in our devices, we could save most of the energy required to run them. If we could mimic biochemical cycling, we could develop efficient recycling at large scales rather than the extremely labor- and energy-intensive processes of today. We look for underlying principles and what we are currently missing in our understanding. Two of the areas we are exploring are spin conservation in chiral molecules and the roles of polarizability in biological, and now synthetic, systems. Taking this perspective has already led to novel discoveries and inventions, including thermal control with orders of magnitude improvements, in scale, speed, and effect. One of the key advances in nanoscience and nanotechnology has been our increasing ability to reach the limits of atomically precise structures. By having developed the “eyes” to see, to record spectra, and to measure function at the nanoscale, we have been able to fabricate structures with precision as well as to understand the important and intrinsic heterogeneity of function found in these assemblies. The physical, electronic, mechanical, thermal, and chemical connections that materials make to one another and to the outside world are critical. Just as the properties and applications of conventional semiconductor devices depend on these contacts, so do nanomaterials, many nanoscale measurements, and devices of the future. Bio: Paul S. Weiss ’80 graduated from MIT with SB and SM degrees in chemistry and from UC Berkeley with a PhD in chemistry. He is a nanoscientist and holds a UC Presidential Chair and is a distinguished professor of chemistry & biochemistry, bioengineering, and materials science & engineering at UCLA, where he was previously director of the California NanoSystems Institute. He holds visiting appointments at Harvard’s Wyss Institute and several universities in Australia, China, Hong Kong, India, and South Korea. He studies the ultimate limits of miniaturization, developing and applying new tools and methods for atomic-resolution and spectroscopic imaging and patterning of chemical functionality. He and his group apply these advances in other areas including quantum information, precision medicine, neuroscience, microbiome studies, tissue engineering, cellular agriculture, high-throughput gene editing, and cosmetics. He led, coauthored, and published the technology roadmaps for the BRAIN Initiative and the U.S. Microbiome Initiative. He was the founding editor-in-chief of ACS Nano, 2007–2021. He has won awards in science, engineering, teaching, publishing, and communications. He is a fellow of the American Academy of Arts and Sciences, AAAS, ACS, AIMBE, APS, AVS, Canadian Academy of Engineering, IEEE, MRS, and National Academy of Inventors.

Tickets
Calendar
Time zone
EDT
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Details

When
Wed, Oct 7, 2026 · 12:00 PM (EDT) · until 1:00 PM
Where
Building 34
Address
50 Vassar Street, Building 34, MA, 02139
Price
See listing

Questions

When is Mimicking Nature: Controlling Charge, Heat, and Spin at Interfaces (Joint with MIT.nano)?
Wed, Oct 7, 2026 at 12:00 PM EDT.
How much are tickets for Mimicking Nature: Controlling Charge, Heat, and Spin at Interfaces (Joint with MIT.nano)?
Prices are not published in the listing data; they are shown on Calendar.
Where is Mimicking Nature: Controlling Charge, Heat, and Spin at Interfaces (Joint with MIT.nano)?
Building 34, 50 Vassar Street, Building 34, MA, 02139, Cambridge, MA.
Where can I buy tickets for Mimicking Nature: Controlling Charge, Heat, and Spin at Interfaces (Joint with MIT.nano)?
Tickets are sold on Calendar. This page links straight to that listing; no tickets are sold here.
What time does Mimicking Nature: Controlling Charge, Heat, and Spin at Interfaces (Joint with MIT.nano) end?
It runs until 1:00 PM.

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