Search Results - "Netanel Shpigel"
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Manipulating Oxygen Vacancies to Spur Ion Kinetics in V2O5 Structures for Superior Aqueous Zinc‐Ion Batteries
Published in Advanced functional materials (01-11-2023)“…Vanadium‐based intercalation materials have attracted considerable attention for aqueous zinc‐ion batteries (ZIBs). However, the sluggish interlaminar…”
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Enhancing the Energy Storage Capabilities of Ti3C2Tx MXene Electrodes by Atomic Surface Reduction
Published in Advanced functional materials (01-12-2021)“…MXenes are a large class of 2D materials that consist of few‐atoms‐thick layers of transition metal carbides, nitrides, or carbonitrides. The surface…”
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Direct Assessment of Nanoconfined Water in 2D Ti3C2 Electrode Interspaces by a Surface Acoustic Technique
Published in Journal of the American Chemical Society (18-07-2018)“…Although significant progress has been achieved in understanding of ion-exchange mechanisms in the new family of 2D transition metal carbides and nitrides…”
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Is “Water in Salt” Electrolytes the Ultimate Solution? Achieving High Stability of Organic Anodes in Diluted Electrolyte Solutions Via a Wise Anions Selection
Published in Angewandte Chemie International Edition (20-11-2023)“…The introduction of the water‐in‐salt (WIS) electrolytes concept to prevent water splitting and widen the electrochemical stability window, has spurred…”
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Ultra-high-rate pseudocapacitive energy storage in two-dimensional transition metal carbides
Published in Nature energy (10-07-2017)“…The use of fast surface redox storage (pseudocapacitive) mechanisms can enable devices that store much more energy than electrical double-layer capacitors…”
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Operating Highly Stable LiCoO2 Cathodes up to 4.6 V by Using an Effective Integration of Surface Engineering and Electrolyte Solutions Selection
Published in Advanced functional materials (01-08-2022)“…The need for high power density cathodes for Li‐ion batteries can be fulfilled by application of a high charging voltage above 4.5 V. As lithium cobalt oxide…”
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Polyimide Compounds For Post‐Lithium Energy Storage Applications
Published in Angewandte Chemie International Edition (11-12-2023)“…The exploration of cathode and anode materials that enable reversible storage of mono and multivalent cations has driven extensive research on organic…”
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MXenes in aqueous electrochemical energy systems
Published in Journal of solid state electrochemistry (01-09-2022)“…Since their discovery in 2011, MXenes are extensively studied as materials for electrochemical energy storage systems. The high electric conductivity, 2D…”
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In situ real-time gravimetric and viscoelastic probing of surface films formation on lithium batteries electrodes
Published in Nature communications (09-11-2017)“…It is generally accepted that solid–electrolyte interphase formed on the surface of lithium-battery electrodes play a key role in controlling their cycling…”
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Solving the Capacitive Paradox of 2D MXene using Electrochemical Quartz-Crystal Admittance and In Situ Electronic Conductance Measurements
Published in Advanced energy materials (01-01-2015)“…Fast ion adsorption processes in supercapacitors enable quick storage/delivery of significant amounts of energy, while ion intercalation in battery materials…”
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Unraveling the Role of Fluorinated Alkyl Carbonate Additives in Improving Cathode Performance in Sodium-Ion Batteries
Published in ACS applied materials & interfaces (06-10-2021)“…A key issue in the development of sustainable Na-ion batteries (NIBs) is the stability of the electrolyte solution and its ability to form effective…”
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Revisiting the Charging Mechanism of α‐MnO2 in Mildly Acidic Aqueous Zinc Electrolytes
Published in Small (Weinheim an der Bergstrasse, Germany) (01-11-2024)“…In recent years, there have been extensive debates regarding the charging mechanism of MnO2 cathodes in aqueous Zn electrolytes. The discussion centered on…”
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Elucidation of the Charging Mechanisms and the Coupled Structural–Mechanical Behavior of Ti3C2Tx (MXenes) Electrodes by In Situ Techniques
Published in Advanced energy materials (24-02-2023)“…The discovery of the Ti3C2Tx compounds (MXenes) a decade ago opened new research directions and valuable opportunities for high‐rate energy storage…”
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Super‐Stretchable and High‐Energy Micro‐Pseudocapacitors Based on MXene Embedded Ag Nanoparticles
Published in Advanced materials (Weinheim) (01-06-2024)“…The advancement of aqueous micro‐supercapacitors offers an enticing prospect for a broad spectrum of applications, spanning from wearable electronics to…”
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In situ hydrodynamic spectroscopy for structure characterization of porous energy storage electrodes
Published in Nature materials (01-05-2016)“…A primary atomic-scale effect accompanying Li-ion insertion into rechargeable battery electrodes is a significant intercalation-induced change of the unit cell…”
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Selected future tasks in electrochemical research related to advanced power sources
Published in Journal of solid state electrochemistry (01-09-2020)Get full text
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Application of a conversion electrode based on decomposition derivatives of Ag4[Fe(CN)6] for aqueous electrolyte batteries
Published in RSC advances (29-03-2022)“…The lack of stable electrode materials for water-based electrolytes due to the intercalation and conversion reaction mechanisms encourage scientists to design…”
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Quantification of porosity in extensively nanoporous thin films in contact with gases and liquids
Published in Nature communications (27-09-2019)“…Nanoporous layers are widely spread in nature and among artificial devices. However, complex characterization of extensively nanoporous thin films showing…”
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Correction to: Selected future tasks in electrochemical research related to advanced power sources
Published in Journal of solid state electrochemistry (2020)“…This original article contained a mistake…”
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Highly Stable 4.6 V LiCoO2 Cathodes for Rechargeable Li Batteries by Rubidium‐Based Surface Modifications
Published in Advanced science (01-11-2022)“…Among extensively studied Li‐ion cathode materials, LiCoO2 (LCO) remains dominant for portable electronic applications. Although its theoretical capacity…”
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