Dielectric properties of magnetic-ferroelectric CoO–NaNO2–porous glass nanocomposite
- Авторы: Koroleva E.Y.1,2, Burdin D.Y.2, Kumzerov Y.A.1, Sysoeva A.A.1, Filimonov A.V.2, Vakhrushev S.B.1,3
- 
							Учреждения: 
							- Ioffe Institute
- Peter the Great St. Petersburg Polytechnic University
- St. Petersburg State University
 
- Выпуск: Том 59, № 10 (2017)
- Страницы: 2036-2044
- Раздел: Low-Dimensional Systems
- URL: https://journal-vniispk.ru/1063-7834/article/view/201274
- DOI: https://doi.org/10.1134/S1063783417100237
- ID: 201274
Цитировать
Аннотация
Dielectric properties of the nanostructured multiferroic composite on the basis of silicate porous glass simultaneously filled with ferromagnetic (cobalt oxide CoO) and ferroelectric (sodium nitrite) materials have been investigated in wide temperature (270–570 K) and frequency (10–1–107 Hz) ranges. The mean diameter of pores in the matrix is 7 ± 1 nm. The magnetic material particles are synthesized directly in the pores of the glass matrix and occupy about 10% of the pore volume. The porous glass is well wetted with NaNO2. The latter easily infiltrates into the glass and occupies 90% of the remaining unfilled pore volume. The dielectric response of matrices filled with both the components together and with each component separately is studied. An analysis of the obtained data makes it possible to reveal the contributions of individual components into the dielectric response of the composite and the influence of the confined geometry on their dielectric properties. It is found that the incorporation of CoO nanoparticles leads to an order of magnitude increase in the dielectric permittivity and electrical conductivity of the two-component composite in comparison with these values for the composite filled solely with sodium nitrite and to a decrease in the activation energy over the entire studied temperature range. These studies are of interest not only as a preliminary investigation prior to the study of the effect of a magnetic field on the dielectric properties of the synthesized composite, but are of independent physical interest as well, since they allow one to determine the influence of the confined geometry on the dielectric properties of magnetic metal oxides and on the of their phase transition parameters.
Об авторах
E. Koroleva
Ioffe Institute; Peter the Great St. Petersburg Polytechnic University
							Автор, ответственный за переписку.
							Email: e.yu.koroleva@mail.ioffe.ru
				                					                																			                												                	Россия, 							St. Petersburg; St. Petersburg						
D. Burdin
Peter the Great St. Petersburg Polytechnic University
														Email: e.yu.koroleva@mail.ioffe.ru
				                					                																			                												                	Россия, 							St. Petersburg						
Yu. Kumzerov
Ioffe Institute
														Email: e.yu.koroleva@mail.ioffe.ru
				                					                																			                												                	Россия, 							St. Petersburg						
A. Sysoeva
Ioffe Institute
														Email: e.yu.koroleva@mail.ioffe.ru
				                					                																			                												                	Россия, 							St. Petersburg						
A. Filimonov
Peter the Great St. Petersburg Polytechnic University
														Email: e.yu.koroleva@mail.ioffe.ru
				                					                																			                												                	Россия, 							St. Petersburg						
S. Vakhrushev
Ioffe Institute; St. Petersburg State University
														Email: e.yu.koroleva@mail.ioffe.ru
				                					                																			                												                	Россия, 							St. Petersburg; St. Petersburg						
Дополнительные файлы
 
				
			 
						 
						 
						 
					 
						 
									 
  
  
  
  
  Отправить статью по E-mail
			Отправить статью по E-mail  Открытый доступ
		                                Открытый доступ Доступ предоставлен
						Доступ предоставлен Только для подписчиков
		                                		                                        Только для подписчиков
		                                					