In this paper the morphology (SEM analysis), the internal structure (cross-section analysis) and the growth mechanism of Ni and Co powders electrodeposited from ammoniacal electrolyte are investigated. It is shown that morphology and the internal structure of those powders are quite different. For Ni powder, all particles are of the same morphology, cauliflower-like type. In the case of Co powder, generally two types of particles are detected: (1) dendrite particles and (2) different types of agglomerates, compact, spongy-like and ball-like ones. The growth mechanism for all agglomerates is based on the fact that with the time of growth the disperse (dendrite) agglomerate is branching in different directions and at the tip of each branch sp...
Ni-Co alloy deposits and their parent metals were formed on Cu substrates by electrolysis under diff...
The phase composition, particle size distribution and morphology of cobalt and nickel powders and fo...
Cobalt and nickel powders of three different compositions: Ni0.8Co0.2, Ni0.55Co0.45 and Ni0.2Co0.8 ...
In this paper the morphology (SEM analysis), the internal structure (cross-section analysis) and the...
In this paper the morphology (SEM analysis), the internal structure (cross-section analysis) and the...
In this paper, the morphology and phase structure of Ni-Co powders electrodeposited from ammoniacal ...
In this paper, the morphology and phase structure of Ni-Co powders electrodeposited from ammoniacal ...
In this paper the morphology of Ni-Co powders electrodeposited from ammonium sulfate-boric acid cont...
In this paper the morphology of Ni-Co powders electrodeposited from ammonium sulfate-boric acid cont...
In this paper the morphology of Ni-Co powders electrodeposited from ammonium sulfate-boric acid cont...
In this paper the morphology of Ni-Co powders electrodeposited from ammonium sulfate-boric acid cont...
Polarization characteristics of the processes of Ni and Co powders and Ni-Co alloy powders electrode...
The morphology, phase and chemical composition of Ni-Co alloy powders electrodeposited from an ammon...
The morphology, phase and chemical composition of Ni-Co alloy powders electrodeposited from an ammon...
The morphology, phase and chemical composition of Ni-Co alloy powders electrodeposited from an ammon...
Ni-Co alloy deposits and their parent metals were formed on Cu substrates by electrolysis under diff...
The phase composition, particle size distribution and morphology of cobalt and nickel powders and fo...
Cobalt and nickel powders of three different compositions: Ni0.8Co0.2, Ni0.55Co0.45 and Ni0.2Co0.8 ...
In this paper the morphology (SEM analysis), the internal structure (cross-section analysis) and the...
In this paper the morphology (SEM analysis), the internal structure (cross-section analysis) and the...
In this paper, the morphology and phase structure of Ni-Co powders electrodeposited from ammoniacal ...
In this paper, the morphology and phase structure of Ni-Co powders electrodeposited from ammoniacal ...
In this paper the morphology of Ni-Co powders electrodeposited from ammonium sulfate-boric acid cont...
In this paper the morphology of Ni-Co powders electrodeposited from ammonium sulfate-boric acid cont...
In this paper the morphology of Ni-Co powders electrodeposited from ammonium sulfate-boric acid cont...
In this paper the morphology of Ni-Co powders electrodeposited from ammonium sulfate-boric acid cont...
Polarization characteristics of the processes of Ni and Co powders and Ni-Co alloy powders electrode...
The morphology, phase and chemical composition of Ni-Co alloy powders electrodeposited from an ammon...
The morphology, phase and chemical composition of Ni-Co alloy powders electrodeposited from an ammon...
The morphology, phase and chemical composition of Ni-Co alloy powders electrodeposited from an ammon...
Ni-Co alloy deposits and their parent metals were formed on Cu substrates by electrolysis under diff...
The phase composition, particle size distribution and morphology of cobalt and nickel powders and fo...
Cobalt and nickel powders of three different compositions: Ni0.8Co0.2, Ni0.55Co0.45 and Ni0.2Co0.8 ...