Iftach Yacoby
Affiliations: | Tel Aviv University, Tel Aviv-Yafo, Tel Aviv District, Israel |
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Parents
Sign in to add mentorItai Benhar | grad student | Tel Aviv University | |
Ehud Gazit | grad student | Tel Aviv University | |
Shuguang Zhang | grad student | MIT Media Lab |
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Publications
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Ben-Zvi O, Grinberg I, Orr AA, et al. (2021) Protection of Oxygen-Sensitive Enzymes by Peptide Hydrogel. Acs Nano |
Ben-Zvi O, Dafni E, Feldman Y, et al. (2019) Re-routing photosynthetic energy for continuous hydrogen production in vivo. Biotechnology For Biofuels. 12: 1-13 |
Tóth SZ, Yacoby I. (2019) Paradigm Shift in Algal H Production: Bypassing Competitive Processes. Trends in Biotechnology |
Diament A, Weiner I, Shahar N, et al. (2019) ChimeraUGEM: unsupervised gene expression modeling in any given organism. Bioinformatics. 35: 3365-3371 |
Milrad Y, Schweitzer S, Feldman Y, et al. (2018) Green Algal Hydrogenase Activity Is Outcompeted by Carbon Fixation before Inactivation by Oxygen Takes Place. Plant Physiology. 177: 918-926 |
Weiner I, Atar S, Schweitzer S, et al. (2018) Enhancing Heterologous Expression in Chlamydomonas reinhardtii by Transcript Sequence Optimization. The Plant Journal : For Cell and Molecular Biology |
Weiner I, Shahar N, Feldman Y, et al. (2018) Overcoming the expression barrier of the ferredoxin‑hydrogenase chimera in Chlamydomonas reinhardtii supports a linear increment in photosynthetic hydrogen output Algal Research-Biomass Biofuels and Bioproducts. 33: 310-315 |
Eilenberg H, Weiner I, Ben-Zvi O, et al. (2016) The dual effect of a ferredoxin-hydrogenase fusion protein in vivo: successful divergence of the photosynthetic electron flux towards hydrogen production and elevated oxygen tolerance Biotechnology For Biofuels. 9: 182 |
Liran O, Semyatich R, Milrad Y, et al. (2016) Microoxic Niches within the Thylakoid Stroma of Air-Grown Chlamydomonas reinhardtii Protect [FeFe]-Hydrogenase and Support Hydrogen Production under Fully Aerobic Environment Plant Physiology. 172: 264-271 |
Zvi OB, Yacoby I. (2016) The in-vitro enhancement of FeFe hydrogenase activity by superoxide dismutase International Journal of Hydrogen Energy. 41: 17274-17282 |