Skip to Content

Transport at Nanoscale Interfaces Laboratory

Our interdisciplinary team gathers physicists, materials scientists, (bio-) chemists, and engineers focusing on bringing novel materials to devices. We are interested in understanding the fundamental electronic, optoelectronic, thermal and ionic transport processes involved in atomically-precise nanostructures and low-dimensional materials. The heterogeneous integration of novel nanomaterials requires custom-made methods for nanoscale patterning and interfaces nanostructuring. Overall, we strive to master the chain of competences leading from designer materials with tailored quantum properties to devices with targeted application in information & quantum technology, energy conversion & storage as well as biochemical sensing & diagnostics.

 

Research

Technical Expertise

Now:

News

Sept. 01, 2018

Welcome to Jingming Cao, our PhD student on the Thz-Wood Project

 

Publications

Spin signatures in the electrical response of graphene nanogaps

Víctor M. García-Suarez, Amador García-Fuente, Diego J Carrascal, Enrique Burzuri Linares, Max Koole, Herre S.J. van der Zant, Maria El Abbassi, Michel Calame and Jaime Ferrer Nanoscale (2018) DOI: 10.1039/C8NR06123H
 
 

Propose:

 

 

Welcome to Jingming Cao, our PhD student on the Thz-Wood Project

 

Publications

 

Víctor M. García-Suarez, Amador García-Fuente, Diego J Carrascal, Enrique Burzuri Linares, Max Koole, Herre S.J. van der Zant, Maria El Abbassi, Michel Calame and Jaime Ferrer Nanoscale (2018)

Empa Standard Article Aggregator List

Content with tag tatp .

 

Short News Aggregator List

Content with tag tatp .

News

$title

Apr 26, 2024

Huang, W., Paul, T., Perrin, M. L., & Calame, M.

2D Materials, 11(3), 033001 (7 pp.). (2024).

https://doi.org/10.1088/2053-1583/ad3e09
 

$title

May 4, 2023

Huang, W., Paul, T., Watanabe, K., Taniguchi, T., Perrin, M. L., & Calame, M. 

Physical Review Research, 5(2), 023075 (11 pp.) (2023). 

https://doi.org/10.110...

Content with tag tatp .

Eliminating the channel resistance in two-dimensional systems using viscous charge flow.

Eliminating the channel resistance in two-dimensional systems using viscous charge flow. Huang, W., Paul, T., Perrin, M. L., & Calame, M. 2D...

Electronic Poiseuille flow in hexagonal boron nitride encapsulated graphene field effect transistors

Electronic Poiseuille flow in hexagonal boron nitride encapsulated graphene field effect transistors Huang, W., Paul, T., Watanabe, K., Taniguchi, T.,...

Quick Access

Read the latest Empa Quarterly!