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9.296 Titel < 1990
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1. Zhou, Mingxing: Combining high energy efficiency and fast charge-discharge capability in novel BaTiO3-based relaxor ferroelectric ceramic for energy-storage: Elsevier Ltd, 2019. - 9 S.
In: Ceramics international. (2019) S. 3582-3590, ISSN 0272-8842
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2. Lin, Jinfeng: Reversible modulation of photoenergy in Sm-doped (K0.5Na0.5)NbO3 transparent ceramics via photochromic behavior. -
Cambridge: Royal Society of Chemistry, 2019. - 11 S.
In: Journal of materials chemistry. A, Materials for energy and sustainability. (2019) S. 19374-19384, ISSN 2050-7488
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3. Ma, Weigang: Enhanced energy-storage performance with excellent stability under low electric fields in BNT-ST relaxor ferroelectric ceramics. -
Cambridge: Royal Society of Chemistry, 2019. - 8 S.
In: Journal of materials chemistry. C, Materials for optical and electronic devices. (2019) S. 281-288, ISSN 2050-7526
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4. Hu, Di: Greatly enhanced discharge energy density and efficiency of novel relaxation ferroelectric BNT-BKT-based ceramics. -
Cambridge: Royal Society of Chemistry, 2020. - 11 S.
In: Journal of materials chemistry. C, Materials for optical and electronic devices. (2020) S. 591-61, ISSN 2050-7526
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5. Yang, Letao: Ultra-high energy storage performance with mitigated polarization saturation in lead-free relaxors. -
Cambridge: Royal Society of Chemistry, 2019. - 8 S.
In: Journal of materials chemistry. A, Materials for energy and sustainability. (2019) S. 8573-8580, ISSN 2050-7488
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6. Zhu, Chaoqiong: High temperature lead-free BNT-based ceramics with stable energy storage and dielectric properties. -
Cambridge: Royal Society of Chemistry, 2020. - 1 S.
In: Journal of materials chemistry. A, Materials for energy and sustainability. (2020) S. 683-692, ISSN 2050-7488
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7. Tao, Hong: Ultrahigh Performance in Lead-Free Piezoceramics Utilizing a Relaxor Slush Polar State with Multiphase Coexistence. -
United States: American Chemical Society, 2019. - 8 S.
In: Journal of the American Chemical Society. (2019) S. 13987-13994, ISSN 0002-7863
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8. Zhang, Haibo: A review on the development of lead-free ferroelectric energy-storage ceramics and multilayer capacitors. -
Cambridge: Royal Society of Chemistry, 2020. - 2 S.
In: Journal of materials chemistry. C, Materials for optical and electronic devices. (2020) S. 16648-16667, ISSN 2050-7526
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9. Zhao, Zhi-Hao: The formation and effect of defect dipoles in lead-free piezoelectric ceramics: A review: Elsevier B.V, 2019
In: Sustainable Materials and Technologies. (2019) S. e00092, ISSN 2214-9937
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10. Cai, Ziming: Giant dielectric breakdown strength together with ultrahigh energy density in ferroelectric bulk ceramics via layer-by-layer engineering. -
Cambridge: Royal Society of Chemistry, 2019. - 9 S.
In: Journal of materials chemistry. A, Materials for energy and sustainability. (2019) S. 17283-17291, ISSN 2050-7488
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11. Shi, Peng: Large energy storage properties of lead-free (1-x)(0.72Bi0.5Na0.5TiO3-0.28SrTiO3)-xBiAlO3 ceramics at broad temperature range. -
Lausanne: Elsevier B.V, 2019. - 6 S.
In: Journal of alloys and compounds. (2019) S. 788-793, ISSN 0925-8388
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12. Huan-Huan Guo: Temperature stable Li2Ti0.75(Mg1/3Nb2/3)0.25O3-based microwave dielectric ceramics with low sintering temperature and ultra-low dielectric loss for dielectric resonator antenna applications. -
Cambridge: Royal Society of Chemistry, 2020. - 11 S.
In: Journal of materials chemistry. C, Materials for optical and electronic devices. (2020) S. 4690-4700, ISSN 2050-7526
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13. Hammel, E.C.: Processing and properties of advanced porous ceramics: An application based review: Elsevier Ltd, 2014. - 20 S.
In: Ceramics international. (2014) S. 15351-15370, ISSN 0272-8842
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14. Yan, Zhongna: Silver niobate based lead-free ceramics with high energy storage density. -
Cambridge: Royal Society of Chemistry, 2019. - 1 S.
In: Journal of materials chemistry. A, Materials for energy and sustainability. (2019) S. 172-1711, ISSN 2050-7488
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15. Li, Zhi-Tao: Ferroelectric and piezoelectric properties of 0.82(Bi0.5Na0.5) TiO3-(0.18-x)BaTiO3-x(Bi0.5Na0.5)(Mn1/3Nb2/3)O3 lead-free ceramics: Elsevier B.V, 2019. - 6 S.
In: Journal of alloys and compounds. (2019) S. 948-953, ISSN 0925-8388
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16. Zhang, Xue: Synergistic Coupling between Li6.75La3Zr1.75Ta0.25O12 and Poly(vinylidene fluoride) Induces High Ionic Conductivity, Mechanical Strength, and Thermal Stability of Solid Composite Electrolytes: American Chemical Society, 2017. - 7 S.
In: Journal of the American Chemical Society. (2017) S. 13779-13785, ISSN 0002-7863
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17. Qiao, Xiaoshuang: Bi0.5Na0.5TiO3-based relaxor ferroelectric ceramic with large energy density and high efficiency under a moderate electric field. -
Cambridge: Royal Society of Chemistry, 2019. - 7 S.
In: Journal of materials chemistry. C, Materials for optical and electronic devices. (2019) S. 10514-10520, ISSN 2050-7526
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18. Zong, Yanbing: Preparation of anorthite-based porous ceramics using high-alumina fly ash microbeads and steel slag: Elsevier Ltd, 2019. - 7 S.
In: Ceramics international. (2019) S. 22445-22451, ISSN 0272-8842
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19. Chen, Zhangwei: 3D printing of ceramics: A review: Elsevier Ltd, 2019. - 27 S.
In: Journal of the European Ceramic Society. (2019) S. 661-687, ISSN 0955-2219
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20. Yang, Jinlong: Recent developments in gelcasting of ceramics: Elsevier Ltd, 2011. - 23 S.
In: Journal of the European Ceramic Society. (2011) S. 2569-2591, ISSN 0955-2219
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