BOOK CHAPTERS

Recent publications

  • Peta G, Alon-Yehezkel H, Bublil S, Penki TR, Breuer O, Elias Y, Fayena-Greenstein M, Aurbach D. Influence of salt anions on the reactivity of polymer electrolytes in all-solid-state sodium batteries. J Electrochem Soc 2022 169 070530
  • Fan T, Kai W, Harika VK, Liu C, Nimkar A, Leifer N, Maiti S, Grinblat J, Nadav-Tsubery M, Liu X, Wang M, Xu L, Lu Y, Min Y, Shpigel N, Aurbach D. Operating highly stable LiCoO2 cathodes up to 4.6 V by using an effective integration of surface engineering and electrolyte solutions selection. Adv Funct Mater 2022 220 2204972
  • Pavčnik T, Lozinšek M, Pirnat K, Vizintin A, Mandai T, Aurbach D, Dominko R, Bitenc J. On the practical applications of the magnesium fluorinated alkoxyaluminate electrolyte in Mg battery cells. ACS Appl Mater Interfaces 2022 14 (23) 26766–26774
  • Nayak PK, Boopathi D, Levi E, Grinblat J, Elias Y, Markovsky B, Aurbach D. Al-doped Co-free layered-spinel Mn/Ni oxides as high-capacity cathode materials for advanced Li-ion batteries. ACS Appl Energy Mater 2022 5 (4) 4279–4287
  • Kornilov D, Penki TR, Cheglakov A, Aurbach D. Li/graphene oxide primary battery system and mechanism. Battery Energy 2022 1 20210002
  • Maiti S, Konar R, Sclar H, Grinblat J, Talianker M, Tkachev M, Wu X, Kondrakov A, Nessim GD, Aurbach D. Stabilizing high-voltage lithium-ion battery cathodes using functional coatings of 2D tungsten diselenide. ACS Energy Lett 2022 7 (4) 1383–1391
  • Sclar H, Maiti S, Sharma R, Erickson EM, Grinblat J, Raman R, Talianker M, Noked M, Kondrakov A, Markovsky B, Aurbach D. Improved electrochemical behavior and thermal stability of Li and Mn-rich cathode materials modified by lithium sulfate surface treatment. Inorganics 2022 10 (3) 39
  • Maiti S, Sclar H, Grinblat J, Talianker M, Tkachev M, Tsubery M, Wu X, Noked M, Markovsky B, Aurbach D. Double gas treatment: A successful approach for stabilizing the Li and Mn-rich NCM cathode materials’ electrochemical behavior. Energy Storage Materials 2022 45 74–91
  • Bublil S, Peta G, Alon-Yehezkel H, Elias Y, Golodnitsky D, Fayena-Greenstein M, Aurbach D. A study of composite solid electrolytes: The effect of inorganic additives on the polyethylene oxide-sodium metal interface. J Electrochem Soc 2022 169 020504
  • Markevich E, Salitra G, Yoshida H, Sawada S, Aurbach D. An improved cycling performance of different types of composite sulfur-carbon cathodes with the use of lithium polysulfides containing electrolyte solutions. J Electrochem Soc 2022 169 010527
  • Turgeman M, Wineman-Fisher V, Malchik F, Saha A, Bergman G, Gavriel B, Penki TR, Nimkar A, Baranauskaite V, Aviv H, Levi MD, Noked M, Major DT, Shpigel N, Aurbach D. A cost-effective water-in-salt electrolyte enables highly stable operation of a 2.15-V aqueous lithium-ion battery. Cell Reports Physical Science 2022 3 (1) 100688
  • Ma X, Wang WA, Zhang L, Wu Q, Lu S, Aurbach D, Xiang Y. Anions-capture materials for electrochemical electrode deionization: Mechanism, performance, and development prospects. Desalination 2021 520 115336
  • Peta G. Bublil S, Alon-Yehezkel H, Breuer O, Elias Y, Shpigel N, Fayena-Greenstein M, Golodnitsky D, Aurbach D. Toward high performance all solid-state Na batteries: Investigation of electrolytes comprising NaPF6, poly(ethylene oxide) and TiO2. J Electrochem Soc 2021 168 110553
  • Aurbach D, Markevich E, Salitra G. High energy density rechargeable batteries based on Li Metal anodes. The role of unique surface chemistry developed in solutions containing fluorinated organic co-solvents. J Am Chem Soc 2021 143 (50) 21161–21176
  • Maiti S, Sclar H, Grinblat J, Talianker M, Tkachev M, Tsubery M, Wu X, Noked M, Markovsky B, Aurbach D. Double gas treatment. 2021

Patents

  • Malka, David; Aurbach, Doron.Electrodes for electrochemical capacitors based on surface-modified carbon. PCT Int. Appl. (2021), WO 2021149063 A1 20210729.
  • Wu, Xiaohan; Aurbach, Doron; Sclar, Hadar; Markovsky, Boris; Maiti, Sandipan. Process for making a mixed oxide, and mixed oxides. PCT Int. Appl. (2021), WO 2021191142 A1 20210930.
  • Luski, Shalom; Aurbach, Doron; Yariv, Ortal. Electrolyte solutions for high voltage lithium-ion cells. Israeli (2020), IL 260745 A 20200130.
  • Luski, Shalom; Aurbach, Doron; Yariv, Ortal. Electrolyte solutions for rechargeable high voltage lithium-ion cells based on fluorinated alkyl carbonate solvents and additives. PCT Int. Appl. (2020), WO 2020021530 A1 20200130.
  • Avraham, Eran; Cohen, Izaak; Aurbach, Doron. Method and apparatus for electrochemical pH control. Israeli (2019), IL 257589 A 20190829.
  • Avraham, Eran; Cohen, Izaak; Aurbach, Doron.Method and apparatus for electrochemical pH control for water treatment. PCT Int. Appl. (2019), WO 2019159181 A1 20190822.
  • Metzger, Michael; Beyer, Hans; Sicklinger, Johannes; Pritzl, Daniel; Strehle, Benjamin; Gasteiger, Hubert; Sclar, Hadar; Erickson, Evan; Amalraj, Francis; Grinblat, Judith; et al. Process for making a cathode active material for a lithium-ion battery. PCT Int. Appl. (2019), WO 2019002116 A1 20190103.
  • Cohen, Izaak; Aurbach, Doron; Soffer, Abraham. Selective bromide ion removal and recovery by electrochemical desalination. PCT Int. Appl. (2019), WO 2019102394 A1 20190531.
  • Luski, Shalom; Aurbach, Doron; Fuller, Timothy J.; Halalay, Ion C.; Banerjee, Anjan; Ziv, Baruch; Raghunathan, K. Acid-scavenging functional separators for power performance of lithium-ion electrochemical cells. U.S. Pat. Appl. Publ. (2018), US 20180366781 A1 20181220.
  • Aurbach, Doron; Abraham, Eran; Cohen, Izaak.Asymmetric electrochemical cell apparatus, and operating methods thereof. PCT Int. Appl. (2017), WO 2017064577 A1 20170420.
  • Luski, Shalom; Aurbach, Doron; Powell, Bob R., Jr.; Halalay, Ion C.; Fuller, Timothy J.; Banerjee, Anjan; Ziv, Baruch; Shilina, Yuliya. Ger. Lithium-ion battery. Offen. (2017), DE 102017113282 A1 20171221.
  • Shilina, Yuliya; Aurbach, Doron; Halalay, Ion C.; Luski, Shalom; Fuller, Timothy J.; Powell, Bob R., Jr.; Banerjee, Anjan; Ziv, Baruch. Lithium-ion battery containing chelating agents for immobilization of transition metal cations. Ger. Offen. (2017), DE 102017113276 A1 20171221.
  • Cahana, Beni; Aurbach, Doron. Lead acid battery with prolonged service life. PCT Int. Appl. (2016), WO 2016178219 A1 20161110.
  • Markevich, Elena; Sharabi, Ronit; Fridman, Katia; Salitra, Gregory; Aurbach, Doron; Elazari, Ran. Lithium-ion secondary battery comprising a silicon anode. U.S. Pat. Appl. Publ. (2015), US 20150263386 A1 20150917.
  • Garsuch, Arnd; Aurbach, Doron; Elazari, Ran; Salitra, Gregory; Meini, Stefano. Use of redox mediators as additives in electrolytes of lithium sulfur batteries. PCT Int. Appl. (2015), WO 2015044829 A1 20150402.
  • Garsuch, Arnd; Panchenko, Alexander; Aurbach, Doron; Elazari, Ran; Salitra, Gregory. Electrode material for rechargeable electrical cells comprising activated carbon fibers. U.S. Pat. Appl. Publ. (2014), US 20140212771 A1 20140731.
  • Markevich, Elena; Sharabi, Ronit; Fridman, Katia; Salitra, Gregory; Aurbach, Doron; Elazari, Ran. Lithium-ion secondary batteries with silicon anodes. PCT Int. Appl. (2014), WO 2014067914 A1 20140508.
  • Markevich, Elena; Sharabi, Ronit; Fridman, Katia; Salitra, Gregory; Aurbach, Doron; Elazari, Ran. Lithium-ion secondary battery comprising lithium cobalt phosphate as cathode active material. PCT Int. Appl. (2014), WO 2014067891 A1 20140508.
  • Cahana, Beni; Aurbach, Doron; Jacob, David. Process for obtaining mixtures of carbon nanotubes in solid or viscous matrices. PCT Int. Appl. (2014), WO 2014141279 A1 20140918.
  • Garsuch, Arnd; Panchenko, Alexander; Aurbach, Doron; Elazari, Ran; Salitra, Gregory. Electrode material for rechargeable electrical cells comprising activated carbon fibers. PCT Int. Appl. (2013), WO 2013027155 A1 20130228.
  • Zimrin, Tomer; Shapira, Roni; Aurbach, Doron; Cahana, Beni. Funcionalized carbon nanotube composite for use in lead acid battery. PCT Int. Appl. (2013), WO 2013011516 A1 20130124.
  • Doe, Robert Ellis; Han, Ruoban; Gofer, Yossef; Aurbach, Doron; Pour, Nir; Sterenberg, Evgeny. Non-aqueous electrolyte for rechargeable magnesium ion cell. PCT Int. Appl. (2013), WO 2013096827 A1 20130627.
  • Luski, Shalom; Meitav, Arieh; Aurbach, Doron; Lancry, Eli.Secondary electrochemical cell with alkali metal inter-electrode scavenger. PCT Int. Appl. (2011), WO 2011024149 A1 20110303.
  • Genosar, Amir; Aurbach, Doron; Markevich, Elena; Salitra, Grigory; Goldstein, Jonothan; Levi, Mikhail; Fleischer, Niles; Bachar, Yehuda; Aldar, Yossi. Drug delivery device comprising lithium battery cell. U.S. Pat. Appl. Publ. (2010), US 20100022992 A1 20100128.
  • Aurbach, Doron; Levi, Elena; Mitelman, Ariel; Lancry, Eli; Mizrahi, Oren; Gofer, Yosef; Chasid, Orit; Suresh, Gurukar Shivappa. Rechargeable magnesium battery. U.S. Pat. Appl. Publ. (2008), US 20080182176 A1 20080731.
  • Gofer, Yosef; Lancry, Eli; Gizbar, Haim; Chasid, Orlt; Malovanyy, Sergiy; Aurbach, Doron; Levi, Elena. Preparation of Chevrel phase materials. U.S. Pat. Appl. Publ. (2005), US 20050220699 A1 20051006.
  • Gofer, Yosef; Belostotskii Anatoly M.; Aurbach Doron. Polyvinyl Mercaptan Redox Material for Cathodes in Non-Aqueous Batteries. (2002), US patent US 6403255 B1.
  • Aurbach, Doron; Chasid, Orit; Gofer, Yossi; Gizbar, Chaiim. High-energy, rechargeable batteries with nonaqueous gel polymer electrolyte, an intercalation cathode, and a magnesium anode. U.S. Pat. Appl. Publ. (2001), US 20010049060 A1 20011206.
  • Aurbach, Doron; Gofer, Yosef; Schechter, Alexander; Zhonghua, Lu; Gizbar, Chaim. High-energy, rechargeable, electrochemical cells using nonaqueous electrolytes. PCT Int. Appl. (2001), WO 2001029919 A1 20010426.
  • Gofer, Yosef; Belostotskii, Anatoly M.; Aurbach, Doron.Redox material for cathodes in nonaqueous batteries. PCT Int. Appl. (2001), WO 2001043209 A2 20010614
  • Dan, Pnina; Geronov, Jordan; Luski, Shalom; Megenitsky, Emil; Aurbach, Doron.Non-aqueous safe secondary battery. Eur. Pat. Appl. (1994), EP 614239 A2 19940907

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