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Dive into the research topics where Vladimir Yufit is active.

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Featured researches published by Vladimir Yufit.


Sustainable Energy and Fuels | 2018

Uncovering the mechanisms of electrolyte permeation in porous electrodes for redox flow batteries through real time in situ 3D imaging

Farid Tariq; Javier Rubio-Garcia; Vladimir Yufit; Antonio Bertei; Barun Kumar Chakrabarti; Anthony Kucernak; Nigel P. Brandon

Increasing energy demands have expedited the need for grid-scale energy storage solutions. High power densities have been achieved using carbon-based electrodes in all-vanadium redox flow batteries. However, fundamental limitations must be overcome to improve viability. This study addresses the infiltration of vanadium solutions into dry electrodes using time-resolved 3D X-ray tomography, thus relating the rate of permeation and other wetting phenomena to microstructural characteristics and surface properties of carbon fibers. It is shown that electrolyte infiltration proceeds according to a non-uniform progression front, with small channel-like pores filled in first and remaining larger pores filled only after 6 h. The vanadium concentration affects the infiltration rate, being faster for 0.5 M VOSO4 while slower for both higher and lower concentrations. The infiltration mechanism is strongly correlated with the temporal decrease in the contact angle, revealing that fibers become more hydrophilic as they are treated by the electrolyte solution. Modification of carbon surface groups through plasma treatment boosts the infiltration process. The results reveal counter-intuitive behaviors of the electrolyte flow whereby the capillary driven flow is found to be secondary to the primary wetting mechanisms. Uncovering these physical phenomena is essential for operational procedures in flow batteries and avoiding cell degradation.


Archive | 2011

BATTERY MONITORING IN ELECTRIC VEHICLES, HYBRID ELECTRIC VEHICLES AND OTHER APPLICATIONS

Nigel Brandon; Paul D. Mitcheson; Vladimir Yufit; David A. Howey; Gregory J. Offer


ECS Transactions | 2013

Understanding the Relationship between Ink Rheology and Film Properties for Screen-Printed Nickel/Scandia-Stabilized-Zirconia Anodes

Mahendra Rao Somalu; Andanastuti Muchtar; Mostafa Ghasemi Baboli; Vladimir Yufit; Ian P. Shapiro; Ping Xiao; Nigel P. Brandon


Journal of The Electrochemical Society | 2017

A Unit Cell Model of a Regenerative Hydrogen-Vanadium Fuel Cell

C. A. Pino Muñoz; H. Hewa Dewage; Vladimir Yufit; Nigel P. Brandon


ECS Conference on Electrochemical Energy Conversion & Storage with SOFC-XIV (July 26-31, 2015) | 2015

Polysulphide Air Redox Flow Battery - a Novel Solution for Grid Scale Energy Storage

Yuhua Xia; Vladimir Yufit; Nigel P. Brandon


2014 ECS and SMEQ Joint International Meeting (October 5-9, 2014) | 2014

In-Operando X-ray Tomography Studies of Dendrite Formation in Zinc-Air Batteries

Vladimir Yufit; Farid Tariq; Billy Wu; Moshiel Biton; Yu Merla; David S Eastwood; Peter D. Lee; Nigel P. Brandon


231st ECS Meeting (May 28 - June 1, 2017) | 2017

(Invited) Ion-Transport in Polymer-in-Ceramic Electrolytes

D. Golodnitsky; Raymond Blanga; Marc B. Berman; Moshiel Biton; Farid Tariq; Vladimir Yufit; Nigel P. Brandon; Steven Greenbaum


PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016

Differential Thermal Voltammetry As a Low Cost in-Situ Diagnosis Tool for Lithium-Ion Batteries

Yu Merla; Billy Wu; Vladimir Yufit; Nigel P. Brandon; Ricardo Martinez-Botas; Gregory J. Offer


PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016

Beyond Pretty Pictures to Useful Quantities: The Next Step in 3D Quantification of SOFC Electrodes

Farid Tariq; Vladimir Yufit; K.M. Kareh; Enrique Ruiz-Trejo; Antonio Bertei; Ed Cohen; Masashi Kishimoto; Nigel P. Brandon


PRiME 2016/230th ECS Meeting (October 2-7, 2016) | 2016

Design-Led Solid Oxide Fuel Cell Manufacturing: Using 3D Imaging and Modeling to Optimize Electrode Performance

K.M. Kareh; Enrique Ruiz-Trejo; Antonio Bertei; Farid Tariq; Vladimir Yufit; Masashi Kishimoto; Nigel P. Brandon

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Billy Wu

Imperial College London

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Yu Merla

Imperial College London

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David S Eastwood

Rutherford Appleton Laboratory

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Peter D. Lee

University of Manchester

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K.M. Kareh

Imperial College London

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