Comparison between crystal structure and dielectric properties Nd(Mg1/2Ti1/2)O3 (NMT) and Nd(Zn1/2Ti1/2)O3 (NZT)
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Khamoushi, KourosMitić, Vojislav V.
Manojlović, Jelena

Paunović, Vesna

Cvetković, Zlata
Lazović, Goran

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The dielectric properties of Neodymium zinc titanium oxide (NZT) and Neodymium magnesium titanium oxide (NMT) were investigated. The single-phase ceramic was synthesized at various temperatures below 1650∘ C. The result shows that the value of temperature of resonant frequency (τf) for NMT is higher than NZT. Our findings also indicate that the rare earth materials produce high property dielectric materials, despite the fact some elements produce lower negative value of temperature of resonant frequency (τf) . By doping a compound such as CaTiO3 which has a very positive temperature of resonant frequency (τf=712 ppm/∘C) and a very high relative permittivity (εr=145), it is possible to tune NZT and MNT to achieve an excellent dielectric material. This work is under consideration. The results of this scientific research could be very important for modern advance applications in microelectronic miniaturization.
Keywords:
microwave dielectric ceramics / dielectric properties / grain growthSource:
Modern Physics Letters B, 2021, 35, 21, 2150370-Publisher:
- World Scientific Pub Co Pte Ltd
Funding / projects:
DOI: 10.1142/S021798492150370X
ISSN: 0217-9849; 1793-6640
WoS: 000678524200005
Scopus: 2-s2.0-85107775564
Institution/Community
Институт техничких наука САНУ / Institute of Technical Sciences of SASATY - JOUR AU - Khamoushi, Kouros AU - Mitić, Vojislav V. AU - Manojlović, Jelena AU - Paunović, Vesna AU - Cvetković, Zlata AU - Lazović, Goran PY - 2021 UR - https://dais.sanu.ac.rs/123456789/12392 AB - The dielectric properties of Neodymium zinc titanium oxide (NZT) and Neodymium magnesium titanium oxide (NMT) were investigated. The single-phase ceramic was synthesized at various temperatures below 1650∘ C. The result shows that the value of temperature of resonant frequency (τf) for NMT is higher than NZT. Our findings also indicate that the rare earth materials produce high property dielectric materials, despite the fact some elements produce lower negative value of temperature of resonant frequency (τf) . By doping a compound such as CaTiO3 which has a very positive temperature of resonant frequency (τf=712 ppm/∘C) and a very high relative permittivity (εr=145), it is possible to tune NZT and MNT to achieve an excellent dielectric material. This work is under consideration. The results of this scientific research could be very important for modern advance applications in microelectronic miniaturization. PB - World Scientific Pub Co Pte Ltd T2 - Modern Physics Letters B T1 - Comparison between crystal structure and dielectric properties Nd(Mg1/2Ti1/2)O3 (NMT) and Nd(Zn1/2Ti1/2)O3 (NZT) SP - 2150370 VL - 35 IS - 21 DO - 10.1142/S021798492150370X UR - https://hdl.handle.net/21.15107/rcub_dais_12392 ER -
@article{ author = "Khamoushi, Kouros and Mitić, Vojislav V. and Manojlović, Jelena and Paunović, Vesna and Cvetković, Zlata and Lazović, Goran", year = "2021", abstract = "The dielectric properties of Neodymium zinc titanium oxide (NZT) and Neodymium magnesium titanium oxide (NMT) were investigated. The single-phase ceramic was synthesized at various temperatures below 1650∘ C. The result shows that the value of temperature of resonant frequency (τf) for NMT is higher than NZT. Our findings also indicate that the rare earth materials produce high property dielectric materials, despite the fact some elements produce lower negative value of temperature of resonant frequency (τf) . By doping a compound such as CaTiO3 which has a very positive temperature of resonant frequency (τf=712 ppm/∘C) and a very high relative permittivity (εr=145), it is possible to tune NZT and MNT to achieve an excellent dielectric material. This work is under consideration. The results of this scientific research could be very important for modern advance applications in microelectronic miniaturization.", publisher = "World Scientific Pub Co Pte Ltd", journal = "Modern Physics Letters B", title = "Comparison between crystal structure and dielectric properties Nd(Mg1/2Ti1/2)O3 (NMT) and Nd(Zn1/2Ti1/2)O3 (NZT)", pages = "2150370", volume = "35", number = "21", doi = "10.1142/S021798492150370X", url = "https://hdl.handle.net/21.15107/rcub_dais_12392" }
Khamoushi, K., Mitić, V. V., Manojlović, J., Paunović, V., Cvetković, Z.,& Lazović, G.. (2021). Comparison between crystal structure and dielectric properties Nd(Mg1/2Ti1/2)O3 (NMT) and Nd(Zn1/2Ti1/2)O3 (NZT). in Modern Physics Letters B World Scientific Pub Co Pte Ltd., 35(21), 2150370. https://doi.org/10.1142/S021798492150370X https://hdl.handle.net/21.15107/rcub_dais_12392
Khamoushi K, Mitić VV, Manojlović J, Paunović V, Cvetković Z, Lazović G. Comparison between crystal structure and dielectric properties Nd(Mg1/2Ti1/2)O3 (NMT) and Nd(Zn1/2Ti1/2)O3 (NZT). in Modern Physics Letters B. 2021;35(21):2150370. doi:10.1142/S021798492150370X https://hdl.handle.net/21.15107/rcub_dais_12392 .
Khamoushi, Kouros, Mitić, Vojislav V., Manojlović, Jelena, Paunović, Vesna, Cvetković, Zlata, Lazović, Goran, "Comparison between crystal structure and dielectric properties Nd(Mg1/2Ti1/2)O3 (NMT) and Nd(Zn1/2Ti1/2)O3 (NZT)" in Modern Physics Letters B, 35, no. 21 (2021):2150370, https://doi.org/10.1142/S021798492150370X ., https://hdl.handle.net/21.15107/rcub_dais_12392 .