Zobrazeno 1 - 10
of 55
pro vyhledávání: '"R. A. Manzhos"'
Publikováno v:
Russian Journal of Electrochemistry. 59:325-334
Autor:
V. K. Kochergin, R. A. Manzhos, N. S. Komarova, A. S. Kotkin, A. G. Krivenko, I. N. Krushinskaya, A. A. Pelmenev
Publikováno v:
High Energy Chemistry. 56:487-492
Publikováno v:
Russian Journal of Electrochemistry. 58:751-754
Autor:
A. G. Krivenko, R. A. Manzhos, V. K. Kochergin, A. S. Kotkin, Yu. V. Pleskov, M. D. Krotova, E. A. Ekimov
Publikováno v:
Russian Journal of Electrochemistry. 58:520-527
Publikováno v:
Russian Journal of Electrochemistry. 58:88-92
Publikováno v:
Russian Journal of Electrochemistry. 57:563-566
Surface of boron-doped diamond film electrode was subjected to plasma-assisted electrochemical treatment by anodic plasma pulses, and a change in the rate constant of electron transfer for several model redox reactions was analyzed.
Publikováno v:
Mendeleev Communications. 31:529-531
A simple strategy for the production of an efficient platinumfree electrocatalyst for the oxygen reduction reaction was demonstrated. Nitrogen-enriched carbon powder was synthesized by a solid-phase method consisting of grinding graphene oxide and me
Publikováno v:
High Energy Chemistry. 54:227-232
A new one-step method for the synthesis of an oxygen reduction electrocatalyst based on a nanocomposite of few-layer graphene structures and manganese oxides is proposed. It has been shown that by using the bipolar method of graphite exfoliation in t
Publikováno v:
Russian Journal of Electrochemistry. 56:418-421
t—The potentialities of single-stage plasma-assisted electrochemical synthesis of few-layer graphene structures with high electrocatalytic characteristics toward the oxygen reduction reaction are demonstrated.
Autor:
G. I. Kozub, Natalya V. Fadeeva, Nina S. Emel’yanova, V. A. Kurmaz, Anastasya A. Balakina, R. A. Manzhos, Alexei A. Terentyev, Svetlana V. Kurmaz, Fedorov Boris S
Publikováno v:
Mendeleev Communications. 30:22-24
New cis-bis[N-(2-nitroxyethyl)isonicotinamide-N]platinum(iv) tetrachloride hybrid materials were obtained via its solubilization by nanoparticles of N-vinylpyrrolidone copolymer with dimethacrylates and characterized. The materials containing 2% of P