Event Type Seminar08apr11:00 am12:00 pmWolfram Research Inc. (Mathematica)Wolfram Mathematica
Wolfram Research Inc. (Mathematica) Title: Wolfram Mathematica Abstract: Single-molecule switches are fundamental building blocks in molecular electronics. I
Title: Wolfram Mathematica
Abstract: Single-molecule switches are fundamental building blocks in molecular electronics. I will discuss single-molecule switching driven by intramolecular double hydrogen transfer (tautomerization), triggered by different reaction pathways such as heat, electrons, mechanical force, light, near-field interactions, and quantum tunneling. Specifically, I will show that for porphycene molecules adsorbed on metal single-crystal surfaces, we can directly observe and control hydrogen-bond dynamics–mediated tautomerization using STM, AFM, and laser excitation techniques. Furthermore, I will discuss how porphycene tautomerization can serve not only as a single-molecule switch based on hydrogen-bond dynamics, but also as a platform for quantum optical and electronic devices that harness the quantum nature of hydrogen nuclei.