Publications

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2026

  1. Shitrit, Y.; Karmel, T.; Pachmanov Dvir, S.; Rubinstein, A. A.; Arazi, Z.; Maman, N.; Caspary Toroker, M.; Udachyan, I.; Cohen, Y. S.; Edri, E. The Dual Role of Antimony in Enhancing the Durability of Bismuth-Based CO₂ Reduction Gas Diffusion Electrodes. Small Struct. 2026, 7 (1), e202500505. https://doi.org/10.1002/sstr.202500505

  2. Tian, Y.; Krounbi, L.; Udachyan, I.; Anandan, V.; Yogev, U.; Shames, A. I.; Brontvein, O.; Bar-Zeev, E.; Edri, E.; Bernstein, R. Protective Alumina Nanolayers Enhance Ozone Resistance of Polyamide Reverse Osmosis Membranes. Environ. Sci. Technol. 2026.


2025

  1. Sadhujan, S.; Shitrit, Y.; Rajput, S.; Udachyan, I.; Friedman, T.; Pevzner, S.; Sharma, C. P.; Arnusch, C. J.; Cohen, Y. S.; Edri, E. A Dual-Functional Membrane for CO₂ Capture and Electrocatalytic Reduction. ChemSusChem 2025, 18 (17), e202500474. https://doi.org/10.1002/cssc.202500474

  2. Shitrit, Y.; Karmel, T.; Rajput, S.; Cohen, Y. S.; Edri, E. Catalytic Layer Microstructure in Pulsed Electrodeposited Bismuth-Based Gas Diffusion Electrodes Used for CO₂ Reduction to Formate. Energy Fuels 2025, 39 (12), 5965–5973.

  3. Amichay, D.; Herman, A.; Shushan Alshochat, K.; Grossman, E.; Hirsch, B.; Vashishtha, A.; Edri, E.; Rosen, B. A.; Segev, G. Tuning Electrochemical Reactions with Ratchet-Based Ion Pumps. ACS Appl. Energy Mater. 2025, 8 (20), 15326–15333.

  4. Cohen, Y. S.; Sadhujan, S.; Duraiyarasu, M.; Rajput, S.; Vashishtha, A.; Shitrit, Y.; Iliashevsky, O.; Edri, E. The Play of Bismuth Disproportionation: Formation of Bi(I) Species During Cluster-Like Electrodeposition Mechanism. Electrochim. Acta 2025, 513, 145576.

  5. Prakash, K.; Valeti, N. J.; Jain, P.; Pathak, C. S.; Singha, M. K.; Gupta, S.; Edri, E.; Mukhopadhyay, S. Single-Crystal Perovskite Halide: Crystal Growth to Devices Applications. Energy Technol. 2025, 13 (7), 2400618.

  6. Bera, S.; Mishuk, E.; Li, P.; Das, S.; Keshet, S.; Garusi, S.; Tunik, L.; Edri, E.; Selzer, Y.; Pecht, I.; et al. Hard-Wired Solid-State Bioelectronic Micropore Devices: Permanent Metal–Protein–Metal Junction Proof-of-Concept. Small 2025, 21 (49), e06560.

  7. Yin, X.; Di, G.; Liu, Y.; Wang, G.; Mi, C.; Kuang, Y.; Xiang, X.; Sun, X.; Edri, E.; Lv, X.; et al. An Energy-Saving Photo-Rechargeable Lithium-Ion Battery Based on Lead-Free Hybrid Perovskite. Sci. China Mater. 2025, 68 (4), 1091–1099.


2024

  1. Vashishtha, A.; Balakrishnan, S. K.; Dror, Y.; Kumar, J.; Parambil, P. C.; Edri, E. What Can Chemical Bonding Tell Us about Photoinduced Phase Transition Reactions in Inorganic Semiconductors? Insight from Bismuth–Antimony Selenide. Inorg. Chem. 2024, 63 (47), 22492–22501. https://doi.org/10.1021/acs.inorgchem.4c02630

  2. Pathak, C. S.; Aloysius, D.; Gupta, S.; Mukhopadhyay, S.; Edri, E. Highly Conductive Flat Grains of Cesium Lead Bromide Perovskites via Additive Engineering with Methylammonium Bromide. Energy Adv. 2024, 3 (10), 2543–2551.


2023

  1. Balakrishnan, S. K.; Parambil, P. C.; Houben, L.; Asher, M.; Yaffe, O.; Edri, E. Revealing Hidden Phases and Self-Healing in Antimony Trichalcogenides and Chalcoiodides. Cell Rep. Phys. Sci. 2023, 4 (3).

  2. Harari, Y.; Pathak, C. S.; Edri, E. Molecular Relays in Nanometer-Scale Alumina: Effective Encapsulation for Water-Submersed Halide Perovskite Photocathodes. Nanoscale 2023, 15 (10), 4951–4961.

  3. Ohayon Dahan, H.; Sror, G.; Landau, M. V.; Edri, E.; Herskowitz, M. Selective Partial Oxidation of Methane with CO₂ Using Mobile Lattice Oxygens of LSF. ACS Eng. Au 2023, 3 (4), 265–277.

  4. Vashishtha, A.; Kumar, J.; Singh, N.; Edri, E. Surface Potential Variation Across (hk1) and Non-(hk1) Grain Boundaries of Antimony Triselenide. J. Alloys Compd. 2023, 948, 169714.


2022

  1. Kumar, J.; Vana, O.; Balakrishnan, S. K.; Edri, E. Benign Solution-Processed (BixSb1-x)₂Se₃ Alloys for Short-Wavelength Infrared Mesoporous Solar Cells. J. Mater. Chem. C 2022, 10 (31), 11220–11231.

  2. Kumar, J.; Dror, Y.; Edri, E. (BixSb1-x)₂Se₃ Thin Films for Short-Wavelength Infrared Solar Cells. J. Mater. Chem. C 2022, 10 (22), 8702–8710.

  3. Shitrit, Y.; Duraiyarasu, M.; Kumar, J.; Reddy, S.; Ya’akobovitz, A.; Cohen, Y. S.; Edri, E. Deposition of Bismuth Nanoplatelets onto Graphene Foam for Electrocatalytic CO₂ Reduction. ACS Appl. Nano Mater. 2022, 5 (11), 16354–16364.

  4. Balakrishnan, S. K.; Parambil, P. C.; Edri, E. Mechanistic Insight into the Topotactic Transformation of Trichalcogenides to Chalcohalides. Chem. Mater. 2022, 34 (7), 3468–3478.

  5. Vashishtha, A.; Vana, O.; Edri, E. Solvent Composition Regulates the Se:Sb Ratio in Antimony Selenide Nanowires Deposited from Thiol–Amine Solvent Mixtures. Nanoscale Adv. 2022, 4 (3), 772–781.

  6. Aloysius, D.; Mondal, A.; Gupta, S.; Edri, E.; Mukhopadhyay, S. Effect of Formamidinium (FA) Ions on Mixed ‘A’-Site Based Bromide Perovskite (APbBr₃) Thin Films. New J. Chem. 2022, 46 (46), 22229–22236.


2021

  1. Rahamim, M.; Cohen, H.; Edri, E. Chemistry and Charge Trapping at the Interface of Silver and Ultrathin Layers of Zinc Oxide. ACS Appl. Mater. Interfaces 2021, 13 (41), 49423–49432.

  2. Dahan, H. O.; Landau, M. V.; Nehemya, R. V.; Edri, E.; Herskowitz, M.; Ruan, C.; Li, F. Core–Shell Fe₂O₃@La₁₋ₓSrₓFeO₃₋δ Material for Catalytic Oxidations. Materials 2021, 14 (23), 7355. https://doi.org/10.3390/ma14237355

  3. Wormser, E. M.; Nir, O.; Edri, E. Low-Resistance Monovalent-Selective Cation Exchange Membranes Prepared Using Molecular Layer Deposition for Energy-Efficient Ion Separations. RSC Adv. 2021, 11 (4), 2427–2436.


2020

  1. Chaudhury, S.; Wormser, E.; Harari, Y.; Edri, E.; Nir, O. Tuning the Ion-Selectivity of Thin-Film Composite Nanofiltration Membranes by Molecular Layer Deposition of Alucone. ACS Appl. Mater. Interfaces 2020, 12 (47), 53356–53364.

2018

  1. Edri, E.; Aloni, S.; Frei, H. Fabrication of Core–Shell Nanotube Array for Artificial Photosynthesis Featuring an Ultrathin Composite Separation Membrane. ACS Nano 2018, 12 (1), 533–541.

  2. Cornejo, J. A.; Sheng, H.; Edri, E.; Ajo-Franklin, C. M.; Frei, H. Nanoscale Membranes that Chemically Isolate and Electronically Wire Up the Abiotic/Biotic Interface. Nat. Commun. 2018, 9 (1), 2263. https://doi.org/10.1038/s41467-018-04707-6


2017

  1. Edri, E.; Cooper, J. K.; Sharp, I. D.; Guldi, D. M.; Frei, H. Ultrafast Charge Transfer Between Light Absorber and Co₃O₄ Water Oxidation Catalyst Across Molecular Wires Embedded in Silica Membrane. J. Am. Chem. Soc. 2017, 139 (15), 5458–5466.

2016

  1. Kim, W.; McClure, B. A.; Edri, E.; Frei, H. Coupling Carbon Dioxide Reduction with Water Oxidation in Nanoscale Photocatalytic Assemblies. Chem. Soc. Rev. 2016, 45 (11), 3221–3243.

  2. Kim, W.; Edri, E.; Frei, H. Hierarchical Inorganic Assemblies for Artificial Photosynthesis. Acc. Chem. Res. 2016, 49 (9), 1634–1645.

  3. Schulz, P.; Tiepelt, J. O.; Christians, J. A.; Levine, I.; Edri, E.; Sanehira, E. M.; Hodes, G.; Cahen, D.; Kahn, A. High-Work-Function Molybdenum Oxide Hole Extraction Contacts in Hybrid Organic–Inorganic Perovskite Solar Cells. ACS Appl. Mater. Interfaces 2016, 8 (46), 31491–31499.


2015

  1. Edri, E.; Frei, H. Charge Transport through Organic Molecular Wires Embedded in Ultrathin Insulating Inorganic Layer. J. Phys. Chem. C 2015, 119 (51), 28326–28334.

  2. Egger, D. A.; Edri, E.; Cahen, D.; Hodes, G. Perovskite Solar Cells: Do We Know What We Do Not Know? J. Phys. Chem. Lett. 2015, 6 (2), 279–282. https://doi.org/10.1021/jz502726b

  3. Hailegnaw, B.; Kirmayer, S.; Edri, E.; Hodes, G.; Cahen, D. Rain on Methylammonium Lead Iodide Based Perovskites: Possible Environmental Effects of Perovskite Solar Cells. J. Phys. Chem. Lett. 2015, 6 (9), 1543–1547.

  4. Kirmayer, S.; Edri, E.; Hines, D.; Klein-Kedem, N.; Cohen, H.; Niitsoo, O.; Pinkas, I.; Kamat, P. V.; Hodes, G. Surface Oxidation as a Cause of High Open-Circuit Voltage in CdSe ETA Solar Cells. Adv. Mater. Interfaces 2015, 2 (1), 1400346. https://doi.org/10.1002/admi.201400346


2014

  1. Edri, E.; Kirmayer, S.; Mukhopadhyay, S.; Gartsman, K.; Hodes, G.; Cahen, D. Elucidating the Charge Carrier Separation and Working Mechanism of CH₃NH₃PbI₃₋ₓClₓ Perovskite Solar Cells. Nat. Commun. 2014, 5, 3461. https://doi.org/10.1038/ncomms4461

  2. Edri, E.; Kirmayer, S.; Henning, A.; Mukhopadhyay, S.; Gartsman, K.; Rosenwaks, Y.; Hodes, G.; Cahen, D. Why Lead Methylammonium Tri-Iodide Perovskite-Based Solar Cells Require a Mesoporous Electron Transporting Scaffold (but Not Necessarily a Hole Conductor). Nano Lett. 2014, 14 (2), 1000–1004. https://doi.org/10.1021/nl404454h

  3. Tidhar, Y.; Edri, E.; Weissman, H.; Zohar, D.; Hodes, G.; Cahen, D.; Rybtchinski, B.; Kirmayer, S. Crystallization of Methyl Ammonium Lead Halide Perovskites: Implications for Photovoltaic Applications. J. Am. Chem. Soc. 2014, 136 (38), 13249–13256. https://doi.org/10.1021/ja505556s

  4. Schulz, P.; Edri, E.; Kirmayer, S.; Hodes, G.; Cahen, D.; Kahn, A. Interface Energetics in Organo-Metal Halide Perovskite-Based Photovoltaic Cells. Energy Environ. Sci. 2014, 7 (4), 1377–1381. https://doi.org/10.1039/c4ee00168k

  5. Edri, E.; Kirmayer, S.; Kulbak, M.; Hodes, G.; Cahen, D. Chloride Inclusion and Hole Transport Material Doping to Improve Methyl Ammonium Lead Bromide Perovskite-Based High Open-Circuit Voltage Solar Cells. J. Phys. Chem. Lett. 2014, 5 (3), 429–433. https://doi.org/10.1021/jz402706q

  6. Barnea-Nehoshtan, L.; Kirmayer, S.; Edri, E.; Hodes, G.; Cahen, D. Surface Photovoltage Spectroscopy Study of Organo-Lead Perovskite Solar Cells. J. Phys. Chem. Lett. 2014, 5 (14), 2408–2413. https://doi.org/10.1021/jz501163r

  7. Edri, E.; Kedem, N.; Cohen, H.; Barnes, P.; Hodes, G. Higher Open Circuit Voltage and Reduced UV-Induced Reverse Current in ZnO-Based Solar Cells by a Chemically Modified Blocking Layer. J. Phys. Chem. C 2014, 118 (30), 16884–16891.

  8. Momblona, C.; Malinkiewicz, O.; Roldán-Carmona, C.; Soriano, A.; Gil-Escrig, L.; Bandiello, E.; Scheepers, M.; Edri, E.; Bolink, H. J. Efficient Methylammonium Lead Iodide Perovskite Solar Cells with Active Layers from 300 to 900 nm. APL Mater. 2014, 2 (8), 081504. https://doi.org/10.1063/1.4890056


2013

  1. Edri, E.; Kirmayer, S.; Cahen, D.; Hodes, G. High Open-Circuit Voltage Solar Cells Based on Organic–Inorganic Lead Bromide Perovskite. J. Phys. Chem. Lett. 2013, 4 (6), 897–902. https://doi.org/10.1021/jz400348s

  2. Edri, E.; Cohen, H.; Hodes, G. Band Alignment in Partial and Complete ZnO/ZnS/CdS/CuSCN Extremely Thin Absorber Cells: An X-Ray Photoelectron Spectroscopy Study. ACS Appl. Mater. Interfaces 2013, 5 (11), 5156–5164. https://doi.org/10.1021/am4009548


2010

  1. Kokotov, M.; Bar-Nachum, S.; Edri, E.; Hodes, G. Effect of Glass Dissolution on the Solution Deposition of ZnO Films and Its Exploitation for Deposition of Zn Silicates. J. Am. Chem. Soc. 2010, 132 (1), 309–314.

  2. Edri, E.; Rabinovich, E.; Niitsoo, O.; Cohen, H.; Bendikov, T.; Hodes, G. Uniform Coating of Light-Absorbing Semiconductors by Chemical Bath Deposition on Sulfide-Treated ZnO Nanorods. J. Phys. Chem. C 2010, 114 (30), 13092–13097.

  3. Kedem, N.; Edri, E.; Kokotov, M.; Cohen, H.; Bendikov, T.; Popovitz-Biro, R.; Von Huth, P.; Ginley, D.; Hodes, G. Effect of Sb Ions on the Morphology of Chemical Bath-Deposited ZnO Films and Application to Nanoporous Solar Cells. Cryst. Growth Des. 2010, 10 (10), 4442–4448.

  4. Frise, A. E.; Edri, E.; Furo, I.; Regev, O. Protein Dispersant Binding on Nanotubes Studied by NMR Self-Diffusion and Cryo-TEM Techniques. J. Phys. Chem. Lett. 2010, 1 (9), 1414–1419.

  5. Edri, E.; Regev, O. Cryo-Staining Techniques in Cryo-TEM Studies of Dispersed Nanotubes. Ultramicroscopy 2010, 110 (7), 751–757.


2009

  1. Edri, E.; Regev, O. “Shaken, Not Stable”: Dispersion Mechanism and Dynamics of Protein-Dispersed Nanotubes Studied via Spectroscopy. Langmuir 2009, 25 (18), 10459–10465.

2008

  1. Edri, E.; Regev, O. pH Effects on BSA-Dispersed Carbon Nanotubes Studied by Spectroscopy-Enhanced Composition Evaluation Techniques. Anal. Chem. 2008, 80 (11), 4049–4054.

Patents

P1. Hodes, G.; Edri, E.; Rabinovich, E. Photovoltaic Cell and Method of Its Manufacture. (2012–2013).

P2. Nir, O.; Edri, E.; Wormser, E. Cation-Exchange Membrane with Improved Monovalent Selectivity, Manufacturing and Uses Thereof in Electrodialysis. (2023).