Study of the Electrophysical Properties of Colloidal Indium Antimonide Quantum Dots

2020 ◽  
Vol 46 (4) ◽  
pp. 339-341
Author(s):  
A. I. Mikhailov ◽  
V. F. Kabanov ◽  
M. V. Gavrikov
2021 ◽  
Vol 55 (3) ◽  
pp. 315-318
Author(s):  
V. F. Kabanov ◽  
A. I. Mikhailov ◽  
M. V. Gavrikov

Author(s):  
A.I. Mikhailov ◽  
V.F. Kabanov ◽  
N.D. Zhukov ◽  
E.G. Glukhovskoy

Author(s):  
В.Ф. Кабанов ◽  
А.И. Михайлов ◽  
М.В. Гавриков

In this work, we studied the influence of the shape of the indium antimonide quantum dots of on some important electrophysical parameters by spectral characteristics analysis, transmission electron microscopy, scanning tunneling microscopy, a laser particle size analyzer, and scanning electron microscopy. It is shown that the real form of quantum dots (spherical and cubic models) at the same characteristic size will noticeably affect the energy spectrum of the investigated objects and, accordingly, their electrophysical and optical properties.


Author(s):  
V. F. Kabanov ◽  
A. I. Mikhailov ◽  
M. V. Gavrikov

1990 ◽  
Vol 5 (3S) ◽  
pp. S182-S188 ◽  
Author(s):  
U Merkt ◽  
Ch Sikorski

Author(s):  
А.И. Михайлов ◽  
В.Ф. Кабанов ◽  
М.В. Гавриков

Abstract The mechanisms of current transport through indium antimonide quantum dots (QDs) have been examined by analyzing normalized differential tunneling current–voltage characteristics. Electron tunneling with the discrete spectrum of QDs taken into account has been studied. The positions of the first three levels of their electronic spectrum have been estimated. It has been demonstrated that the mechanism of the observed field emission from a film structure of colloidal indium antimonide QDs is characterized adequately by the Morgulis–Stratton theory in the range of electric-field intensities corresponding to the experimental conditions.


1981 ◽  
Vol 24 (4) ◽  
pp. 363-366
Author(s):  
A. N. Blagodarov ◽  
V. F. Borodzyulya ◽  
V. V. Golubev ◽  
A. A. Tarnashinskii

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