David Cahen

Weizmann Institute of Science, Rehovot, Israel 
"David Cahen"
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Gabriel J Man research assistant 2010-2011 Weizmann Institute (Physics Tree)
Omer Yaffe grad student Weizmann Institute
Ellen Moons grad student 1990-1995 Weizmann Institute
Jamal Ghabboun grad student 2004 Weizmann Institute
Rotem Har-Lavan grad student 2011 Weizmann Institute
Cunlan Guo post-doc Wuhan University
Yoram Selzer post-doc Weizmann Institute
Nadav Amdursky post-doc 2011-2013 Weizmann Institute
Hannah Noa Barad post-doc 2017-2018
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Fereiro JA, Pecht I, Sheves M, et al. (2021) Inelastic Electron Tunneling Spectroscopic Analysis of Bias-Induced Structural Changes in a Solid-State Protein Junction. Small (Weinheim An Der Bergstrasse, Germany). e2008218
Stefani D, Guo C, Ornago L, et al. (2021) Conformation-dependent charge transport through short peptides. Nanoscale
Futera Z, Ide I, Kayser B, et al. (2020) Coherent Electron Transport across a 3 nm Bioelectronic Junction Made of Multi-Heme Proteins. The Journal of Physical Chemistry Letters. 9766-9774
Fereiro JA, Bendikov T, Pecht I, et al. (2020) Protein Binding and Orientation Matter: Bias-Induced Conductance Switching in a Mutated Azurin Junction. Journal of the American Chemical Society. 142: 19217-19225
Mukhopadhyay S, Karuppannan SK, Guo C, et al. (2020) Solid-State Protein Junctions: Cross-Laboratory Study ShowsPreservationof Mechanism at Varying Electronic Coupling. Iscience. 23: 101099
Woldu AR, Shah AH, Hu H, et al. (2020) Electrochemical reduction of CO2: Two‐ or three‐electrode configuration International Journal of Energy Research. 44: 548-559
Kayser B, Fereiro JA, Bhattacharyya R, et al. (2019) Solid-State Electron Transport via the Protein Azurin is Temperature-Independent Down to 4 K. The Journal of Physical Chemistry Letters
Li C, Xu C, Cahen D, et al. (2019) Unprecedented efficient electron transport across Au nanoparticles with up to 25-nm insulating SiO-shells. Scientific Reports. 9: 18336
Guo C, Yu J, Horsley JR, et al. (2019) Backbone-Constrained Peptides: Temperature & Secondary Structure Affect Solid-State Electron Transport. The Journal of Physical Chemistry. B
Tirosh S, Aloni N, Meir S, et al. (2019) FTO Darkening Rate as a Qualitative, High-throughput Mapping Method for Screening Li-Ionic Conduction in Thin Solid Electrolytes. Acs Combinatorial Science
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