Effect of electrolyte temperature on the cathodic deposition of Ge nanowires on in and Sn particles in aqueous solutions


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Resumo

The results of studying the growth of filamentous Ge structures in aqueous electrolytes at various temperatures using In and Sn nanoparticle arrays as nucleation sites are given. The temperature of Ge cathodic deposition process from aqueous solutions has a significant effect on the layer structure deposited onto the surface. In the presence of metal particles in the molten state, filamentous Ge structures grow due to the cathodic reduction of Ge-containing ions on the electrode surface, followed by dissolution and crystallization in the melt at the substrate interface. The results obtained show the crucial role of liquid metal particles during the electrochemical formation of germanium nanowires.

Sobre autores

I. Gavrilin

National Research University of Electronic Technology (MIET)

Autor responsável pela correspondência
Email: gavrilin.ilya@gmail.com
Rússia, Bld. 1, Shokin Square, Zelenograd, Moscow, 124498

D. Gromov

National Research University of Electronic Technology (MIET)

Email: gavrilin.ilya@gmail.com
Rússia, Bld. 1, Shokin Square, Zelenograd, Moscow, 124498

A. Dronov

National Research University of Electronic Technology (MIET)

Email: gavrilin.ilya@gmail.com
Rússia, Bld. 1, Shokin Square, Zelenograd, Moscow, 124498

S. Dubkov

National Research University of Electronic Technology (MIET)

Email: gavrilin.ilya@gmail.com
Rússia, Bld. 1, Shokin Square, Zelenograd, Moscow, 124498

R. Volkov

National Research University of Electronic Technology (MIET)

Email: gavrilin.ilya@gmail.com
Rússia, Bld. 1, Shokin Square, Zelenograd, Moscow, 124498

A. Trifonov

National Research University of Electronic Technology (MIET); Lukin Research Institute of Physical Problems

Email: gavrilin.ilya@gmail.com
Rússia, Bld. 1, Shokin Square, Zelenograd, Moscow, 124498; 4806 proezd 6, Moscow, Zelenograd, 124460

N. Borgardt

National Research University of Electronic Technology (MIET)

Email: gavrilin.ilya@gmail.com
Rússia, Bld. 1, Shokin Square, Zelenograd, Moscow, 124498

S. Gavrilov

Lukin Research Institute of Physical Problems

Email: gavrilin.ilya@gmail.com
Rússia, 4806 proezd 6, Moscow, Zelenograd, 124460

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