1 |
Electric field gradients and bipolar electrochemistry effects on neural growth: A finite element study on immersed electroactive conducting electrode Abad L, Rajnicek AM, Casan-Pastor N Electrochimica Acta, 317, 102, 2019 |
2 |
4D Printing based piezoelectric composite for medical applications Grinberg D, Siddique S, Le MQ, Liang R, Capsal JF, Cottinet PJ Journal of Polymer Science Part B: Polymer Physics, 57(2), 109, 2019 |
3 |
Efficient synthesis of a new electroactive polymer of Co(II) porphine by in-situ replacement of Mg(II) inside Mg(II) polyporphine film Rolle SD, Konev DV, Devillers CH, Lizgina KV, Lucas D, Stern C, Herbst F, Heintz O, Vorotyntsev MA Electrochimica Acta, 204, 276, 2016 |
4 |
In situ techniques used in hyphenated mode for studying the properties of electroactive materials Visy C, Endrodi B Electrochimica Acta, 215, 187, 2016 |
5 |
In situ UV-visible spectroelectrochemistry in the course of oxidative monomer electrolysis Konev DV, Istakova OI, Sereda OA, Shamraeva MA, Devillers CH, Vorotyntsev MA Electrochimica Acta, 179, 315, 2015 |
6 |
Amperometric sensing. A melting pot for material, electrochemical, and analytical sciences Seeber R, Pigani L, Terzi F, Zanardi C Electrochimica Acta, 179, 350, 2015 |
7 |
Enhanced Charge Capacity in Iridium Oxide-Graphene Oxide Hybrids Carretero NM, Lichtenstein MP, Perez E, Sandoval S, Tobias G, Sunol C, Casan-Pastor N Electrochimica Acta, 157, 369, 2015 |
8 |
Electropolymerization of non-substituted Mg(II) porphine: Effects of proton acceptor addition Konev DV, Devillers CH, Lizgina KV, Baulin VE, Vorotyntsev MA Journal of Electroanalytical Chemistry, 737, 235, 2015 |
9 |
Synthesis of new electroactive polymers by ion-exchange replacement of Mg(II) by 2H(+) or Zn(II) cations inside Mg(II) polyporphine film, with their subsequent electrochemical transformation to condensed-structure materials Konev DV, Devillers CH, Lizgina KV, Zyubina TS, Zyubin AS, Maiorova-Valkova LA, Vorotyntsev MA Electrochimica Acta, 122, 3, 2014 |
10 |
Galvanodynamic synthesis of polyaniline: A flexible method for the deposition of electroactive materials Eftekhari A, Jafarkhani P Journal of Electroanalytical Chemistry, 717, 110, 2014 |