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Tom Guterman
Tom Guterman
Email verificata su mail.tau.ac.il
Titolo
Citata da
Citata da
Anno
A self-healing, all-organic, conducting, composite peptide hydrogel as pressure sensor and electrogenic cell soft substrate
P Chakraborty, T Guterman, N Adadi, M Yadid, T Brosh, ...
ACS nano 13 (1), 163-175, 2018
1572018
Seamless Metallic Coating and Surface Adhesion of Self-Assembled Bioinspired Nanostructures Based on Di-(3,4-dihydroxy-l-phenylalanine) Peptide Motif
G Fichman, L Adler-Abramovich, S Manohar, I Mironi-Harpaz, T Guterman, ...
ACS nano 8 (7), 7220-7228, 2014
792014
Unusual two‐step assembly of a minimalistic dipeptide‐based functional hypergelator
P Chakraborty, Y Tang, T Yamamoto, Y Yao, T Guterman, ...
Advanced Materials 32 (9), 1906043, 2020
732020
Spontaneous structural transition and crystal formation in minimal supramolecular polymer model
G Fichman, T Guterman, J Damron, L Adler-Abramovich, J Schmidt, ...
Science advances 2 (2), e1500827, 2016
712016
Expanding the functional scope of the fmoc‐diphenylalanine hydrogelator by introducing a rigidifying and chemically active urea backbone modification
V Basavalingappa, T Guterman, Y Tang, S Nir, J Lei, P Chakraborty, ...
Advanced Science 6 (12), 1900218, 2019
582019
Synergetic functional properties of two-component single amino acid-based hydrogels
G Fichman, T Guterman, L Adler-Abramovich, E Gazit
CrystEngComm 17 (42), 8105-8112, 2015
382015
Co‐Assembly between Fmoc Diphenylalanine and Diphenylalanine within a 3D Fibrous Viscous Network Confers Atypical Curvature and Branching
P Chakraborty, Y Tang, T Guterman, ZA Arnon, Y Yao, G Wei, E Gazit
Angewandte Chemie 132 (52), 23939-23947, 2020
312020
Real‐Time In‐Situ Monitoring of a Tunable Pentapeptide Gel–Crystal Transition
T Guterman, M Levin, S Kolusheva, D Levy, N Noor, Y Roichman, E Gazit
Angewandte Chemie 131 (44), 16016-16022, 2019
312019
Deciphering the rules for amino acid co-assembly based on interlayer distances
S Bera, S Mondal, Y Tang, G Jacoby, E Arad, T Guterman, R Jelinek, ...
ACS nano 13 (2), 1703-1712, 2019
312019
Formation of bacterial pilus-like nanofibres by designed minimalistic self-assembling peptides
T Guterman, M Kornreich, A Stern, L Adler-Abramovich, D Porath, R Beck, ...
Nature communications 7 (1), 13482, 2016
312016
Electrical conductivity, selective adhesion, and biocompatibility in bacteria‐inspired peptide–metal self‐supporting nanocomposites
T Guterman, NL Ing, S Fleischer, P Rehak, V Basavalingappa, ...
Advanced Materials 31 (10), 1807285, 2019
272019
Phase transition and crystallization kinetics of a supramolecular system in a microfluidic platform
D Cohen-Gerassi, ZA Arnon, T Guterman, A Levin, M Ghosh, M Aviv, ...
Chemistry of Materials 32 (19), 8342-8349, 2020
252020
Toward peptide-based bioelectronics: reductionist design of conductive pili mimetics
T Guterman, E Gazit
Bioelectronics in medicine 1 (2), 131-137, 2018
252018
Opal-like multicolor appearance of self-assembled photonic array
ZA Arnon, D Pinotsi, M Schmidt, S Gilead, T Guterman, A Sadhanala, ...
ACS applied materials & interfaces 10 (24), 20783-20789, 2018
212018
The use of the calcitonin minimal recognition module for the design of DOPA-containing fibrillar assemblies
G Fichman, T Guterman, L Adler-Abramovich, E Gazit
Nanomaterials 4 (3), 726-740, 2014
122014
α-Aminoisobutyric acid incorporation induces cell permeability and antiviral activity of HIV-1 major homology region fragments
A Lampel, E Elis, T Guterman, S Shapira, P Marco, E Bacharach, E Gazit
Chemical communications 51 (62), 12349-12352, 2015
112015
Ehud Gazit
T Guterman
Angewandte
A Chakraborty, AC Fernandez, A Som, B Mondal, G Natarajan, ...
Il sistema al momento non può eseguire l'operazione. Riprova più tardi.
Articoli 1–18