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- Article name
- Functional ceramics with special electrical properties for applications in electronic engineering
- Authors
- VERBENKO I. A., , ilich001@yandex.ru, Research Institute of Physics of Southern Federal University, Rostov-on-Don, Russia
ANDRUSHINA I. N., , futur6@mail.ru, Research Institute of Physics of Southern Federal University, Rostov-on-Don, Russia
ANDRUSHIN K. P., , vortexblow@gmail.com, Research Institute of Physics, Southern Federal University, Rostov-on-Don, Russia
SHILKINA L. A., , lid-shilkina@yandex.ru, Research Institute of Physics, Southern Federal University, Rostov-on-Don, Russia
DUDKINA S. I., , s.i.dudkina@yandex.ru, Research Institute of Physics, Southern Federal University, Rostov-on-Don, Russia
REZNICHENKO L. A., , lareznichenko@sfedu.ru, Research Institute of Physics, Southern Federal University, Rostov-on-Don, Russia
GLAZUNOVA E. V., , kate93g@mail.ru, Southern Federal University, Research Institute of Physics, Rostov-on-Don, Russia
- Keywords
- ceramics / ferroelectrics / niobate materials / electrophysical properties / electronic engineering
- Year
- 2024 Issue 4 Pages 49 - 54
- Code EDN
- WSNOPX
- Code DOI
- 10.52190/2073-2562_2024_4_49
- Abstract
- The article presents the results of a comprehensive study of the ceramics with special electrical properties (ferro-piezoelectric materials) developed by the authors based on alkali metal niobates that do not contain toxic elements, and environmentally friendly technologies for their production with the properties which are required in the practice. Their macro-responses (dielectric, ferroelastic, piezoelectric) are compared with those in the compositions based on the lead titanate-zirconate, which are dominant in the industry. The advantages of the developed materials are described, which make them promising for various applications in the electronic technology as piezoelectric sensors, acoustoelectric transducers, elements of the medical diagnostic equipment, etc. A number of the negative technological factors that hinder the wide practical application of such materials are considered, and ways to minimize them are proposed. A conclusion is made about the expediency of using the presented results in the creation of similar ferro-piezoceramics and/or devices with their participation.
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