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Refinado por: Base de dados/Biblioteca: Engineered Materials Abstracts remover Nome da Publicação: Ferroelectrics remover
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1
Evolution of mechanical strength of the niobate ferro-piezoelectric ceramics with their modifying with various elements
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Evolution of mechanical strength of the niobate ferro-piezoelectric ceramics with their modifying with various elements

Dudkina, S. I. ; Alyoshin, V. A. ; Andryushin, K. P. ; Kovalenko, M. I. ; Andryushina, I. N. ; Verbenko, I. A. ; Reznichenko, L. A.

Ferroelectrics, 2022-06, Vol.591 (1), p.33-42 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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2
Piezo, ferro and dielectric properties of ceramic-polymer composites of 0-3 connectivity
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Piezo, ferro and dielectric properties of ceramic-polymer composites of 0-3 connectivity

Gowdhaman, P. ; Annamalai, V. ; Thakur, O.P.

Ferroelectrics, 2016-03, Vol.493 (1), p.120-129 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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3
Dielectric spectroscopy in para-ferro transition of TGS
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Dielectric spectroscopy in para-ferro transition of TGS

Ganea, Constantin Paul ; Mindru, Carmen ; Vineticu, Nicoleta ; Alexandru, Horia V.

Ferroelectrics, 2016-03, Vol.493 (1), p.165-171 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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4
Synthesis and study of Co doped Ni-Cd ferro-spinels by microwave assisted sol-gel auto-combustion method
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Synthesis and study of Co doped Ni-Cd ferro-spinels by microwave assisted sol-gel auto-combustion method

Ahamad, H S ; Rewatkar, K G ; Meshram, N S ; Dhoble, S J

Ferroelectrics, 2020-01, Vol.567 (1), p.146-160 [Periódico revisado por pares]

Philadelphia: Taylor & Francis Ltd

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5
Peculiarities of Ferro-Antiferroelectric Phase Transitions 9. Can the Substances with Coexisting Ferroelectric and Antiferroelectric Phases Mimic the Dipole-Glass Behavior?
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Peculiarities of Ferro-Antiferroelectric Phase Transitions 9. Can the Substances with Coexisting Ferroelectric and Antiferroelectric Phases Mimic the Dipole-Glass Behavior?

Ishchuk, V. M. ; Sobolev, V. L.

Ferroelectrics, 2011-01, Vol.413 (1), p.409-433 [Periódico revisado por pares]

Colchester: Taylor & Francis Group

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6
Piezoceramics based on lead zirconate titanate for creating highly sensitive ultrasonic equipment
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Piezoceramics based on lead zirconate titanate for creating highly sensitive ultrasonic equipment

Andryushin, K. P. ; Moysa, M. O. ; Glazunova, E. V. ; Shilkina, L. A. ; Kubrin, S. P. ; Sahoo, S. ; Dudkina, S. I. ; Andryushina, I. N. ; Reznichenko, L. A.

Ferroelectrics, 2023-03, Vol.605 (1), p.1-7 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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7
Temperature stability of Na0.1K0.1Pb0.8Nb0.2Ti0.4Zr0.4O3 solid solution
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Temperature stability of Na0.1K0.1Pb0.8Nb0.2Ti0.4Zr0.4O3 solid solution

Andryushin, K. P. ; Shilkina, L. A. ; Andryushina, I. N. ; Dudkina, S. I. ; Rudskiy, D. I. ; Reznichenko, L. A.

Ferroelectrics, 2021-04, Vol.574 (1), p.23-28 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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8
Ferroelectrics-magnetics with the perovskite structure
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Ferroelectrics-magnetics with the perovskite structure

Geguzina, G.A.

Ferroelectrics, 2020-11, Vol.568 (1), p.85-94 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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9
Broadband Near-Infrared Photoluminescence and Strong Visible Up-Conversion Emission in BaTiO3-(Na0.5Er0.5)TiO3 Lead-Free Piezoelectric Ceramics
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Broadband Near-Infrared Photoluminescence and Strong Visible Up-Conversion Emission in BaTiO3-(Na0.5Er0.5)TiO3 Lead-Free Piezoelectric Ceramics

Li, Jun ; Chai, Xiaona ; Hui, Xinwei ; Wang, Xusheng ; Zou, Hua ; Zhao, Haifeng ; Yao, Xi

Ferroelectrics, 2016-01, Vol.490 (1), p.118-126 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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10
Synthesis and characterization of polycrystalline Ba5CaTi2-xMxNb8O30 (M=Cu) tungsten bronze electro ceramics
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Synthesis and characterization of polycrystalline Ba5CaTi2-xMxNb8O30 (M=Cu) tungsten bronze electro ceramics

Jindal, Shilpi ; Vasishth, Ajay ; Devi, Sheela ; Singh, Bikramjit

Ferroelectrics, 2017-10, Vol.519 (1), p.9-14 [Periódico revisado por pares]

Philadelphia: Taylor & Francis

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