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Nitrogen-doped carbon materials derived from acetonitrile and Mg-Co-Al layered double hydroxides as electrocatalysts for oxygen reduction reaction (vol 212, pg 47, 2016) Pacula A, Uosaki K, Socha RP, Bielanska E, Pietrzyk P, Zimowska M Electrochimica Acta, 259, 685, 2018 |
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Physicochemical and electrochemical properties of the carbon materials containing nitrogen and cobalt derived from acetonitrile and Co-Al layered double hydroxides Pacula A, Socha RP, Pietrzyk P, Zimowska M, Ruggiero-Mikoajczyk M, Mucha D, Kosydar R, Mordarski G Journal of Materials Science, 53(16), 11292, 2018 |
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Nitrogen-doped carbon materials derived from acetonitrile and Mg-Co-Al layered double hydroxides as electrocatalysts for oxygen reduction reaction Pacula A, Uosaki K, Socha RP, Bielanska E, Pietrzyk P, Zimowska M Electrochimica Acta, 212, 47, 2016 |
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Physicochemical and catalytic properties of hybrid catalysts derived from 12-molybdophosphoric acid and montmorillonites Pacula A, Pamin K, Krysciak-Czerwenka J, Olejniczak Z, Gil B, Bielanska E, Dula R, Serwicka EM, Drelinkiewicz A Applied Catalysis A: General, 498, 192, 2015 |
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The influence of microporosity creation in highly mesoporous N-containing carbons obtained from chitosan on their catalytic and electrochemical properties Lezanska M, Olejniczak A, Pacula A, Szymanski G, Wloch J Catalysis Today, 227, 223, 2014 |
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Preparation and characterization of the electroactive composites containing nickel nanoparticles and carbon nanotubes Pacula A, Nowak P, Socha RP, Ruggiero-Mikolajczyk M, Mucha D, Bielanska E Electrochimica Acta, 90, 563, 2013 |
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Examination of the electroactive composites containing cobalt nanoclusters and nitrogen-doped nanostructured carbon as electrocatalysts for oxygen reduction reaction Pacula A, Ikeda K, Masuda T, Uosaki K Journal of Power Sources, 220, 20, 2012 |
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Transesterification of triglycerides with methanol over thermally treated Zn-5(OH)(8)(NO3)(2) x 2H(2)O salt Zieba A, Pacula A, Serwicka EM, Drelinkiewicz A Fuel, 89(8), 1961, 2010 |