Microstructuring of the Surface of High-Resistivity Single-Crystalline Silicon by Chemical Etching
- Authors: Kashuba A.S.1, Permikina E.V.1, Golovin S.V.1, Lakmanova M.R.1, Pogozheva A.V.1
 - 
							Affiliations: 
							
- AO NPO Orion
 
 - Issue: Vol 64, No 9 (2019)
 - Pages: 1030-1033
 - Section: Article
 - URL: https://journals.rcsi.science/1064-2269/article/view/201251
 - DOI: https://doi.org/10.1134/S1064226919090109
 - ID: 201251
 
Cite item
Abstract
The influence of various etching processes on the single-crystalline (100) silicon surface is studied. It is demonstrated that microstructuring of the surface of high-resistivity single-crystalline silicon in alkaline solutions is better performed using electrolytic methods at temperatures no lower than 80°C. Etch patterns with better-defined side faces are formed by anisotropic etching with the addition of hydrogen peroxide.
About the authors
A. S. Kashuba
AO NPO Orion
							Author for correspondence.
							Email: orion_kashuba@mail.ru
				                					                																			                												                	Russian Federation, 							Moscow, 111538						
E. V. Permikina
AO NPO Orion
														Email: orion_kashuba@mail.ru
				                					                																			                												                	Russian Federation, 							Moscow, 111538						
S. V. Golovin
AO NPO Orion
														Email: orion_kashuba@mail.ru
				                					                																			                												                	Russian Federation, 							Moscow, 111538						
M. R. Lakmanova
AO NPO Orion
														Email: orion_kashuba@mail.ru
				                					                																			                												                	Russian Federation, 							Moscow, 111538						
A. V. Pogozheva
AO NPO Orion
														Email: orion_kashuba@mail.ru
				                					                																			                												                	Russian Federation, 							Moscow, 111538						
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