755 results on '"Zhou, Huanfu"'
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2. Effect of raw materials type on the sintering ability and microwave dielectric properties of Mg2.15Al4Si5O18 ceramics
3. Enhancement of energy-storage properties in BaTiO3-based relaxor ferroelectrics via introducing (Bi0.5Na0.5)0.7Sr0.3TiO3
4. Sintering process, phase composition, and microwave dielectric properties of NaLn(WO4)2(ln = La, Nd, Sm) ceramics prepared by reaction sintering method
5. Effects of Sintering Behavior, Structure, Packing Fraction, and Bond Valence on the Microwave Dielectric Properties of Low-Permittivity Na2Ba6Si4O15 Ceramics
6. Sintering characteristics, phase structure and microwave dielectric properties of novel BaCeO3 ceramics
7. Realizing high energy storage performance in (Bi0.5Na0.5)0.7Sr0.3TiO3-based relaxors via enhanced local heterogeneity
8. Simultaneous enhancement of energy storage performance and thermal stability of NaNbO3-based ceramics via multi-scale modulation
9. Sintering Behavior, Phase Structure, and Microwave Dielectric Properties of Low-Permittivity Li5Al5Zn8Ge9O36 Ceramics
10. Optimize energy storage performance of NaNbO3 ceramics by multivariable control strategy
11. Mechanism and simulation analysis of high electric field of NaNbO3 − based energy storage ceramics based on defect engineering design
12. Enhanced energy storage performance of 0.9NaNbO3–0.1Ba(Mg1/3Ta2/3)O3 ceramics by doping linear perovskite materials
13. AY2Al4GeO12 (A = Ca, Mg) ceramics: Phase composition, microstructure, lattice vibration, bond characteristics, and microwave dielectric properties
14. Enhanced energy storage performance of NaNbO3-based ceramics by constructing weakly coupled relaxor behavior
15. Ca3ZnAl4O10: A novel Al-rich microwave dielectric ceramic with low-εr
16. Sintering behavior, phase structure and microwave dielectric properties of novel glass-free low-temperature cofiring NaCaLn(MoO4)3(Ln = Nd, Sm) ceramics
17. Enhancement of energy storage performances in BaTiO3-based ceramics via introducing Bi(Mg2/3Sb1/3)O3
18. Sintering characteristics, Raman spectra and the microstructure of novel low loss SrCeO3 ceramics
19. Crystal structure, vibration spectra and microwave dielectric properties for scheelite structure NaSrLa(WO4)3 ceramics and adjustment of its τf value
20. Relationship between microstructure and microwave dielectric properties of glass-free low temperature co-fired CaLa2(MoO4)4 ceramic
21. Sintering characteristic, phase structure, micromorphology, and microwave dielectric properties of novel BaSrSm4O8 ceramic
22. Effects of LiF additives, sintering method on the crystal structure, and microwave dielectric properties of Li4CaSr(SiO4)2 ceramic for low temperature co-fired ceramic application
23. Relationship between structure and microwave dielectric properties of new low-K garnet-type Ca3Cr2Ge3O12 ceramics
24. Achieving large energy density and high efficiency in (Bi0.5Na0.5)0.7Sr0.3TiO3–Ba(Mg1/3Sb2/3)O3 ceramic
25. Phase Composition, Raman Spectrum and Microwave Dielectric Properties of glass-free low temperature co-fired ACaPr(MoO4)3 (A = Na, K) Ceramics
26. Ultralow-loss Sr1+xMgGe2O6+x ceramics: Sintering behavior, microstructure, covalence, lattice vibration, and dielectric properties
27. Mechanical strength and microwave dielectric properties of Al2O3 doped Li2MgTi3O8 ceramics with high temperature stability
28. Sintering behavior, phase composition, microstructure, and dielectric properties of low-permittivity alkaline earth silicate Sr3MgSi2O8 ceramics
29. Dielectric properties of ternary scheelite-type molybdate NaSrLa(MoO4)3 ceramics
30. Sintering behavior, microstructure and microwave dielectric properties of low permittivity Fe2O3–CaSiO3 composite ceramic
31. Effects of Li substitution on the sintering behavior, lattice vibration, bond covalence and dielectric properties of SrMgGe2O6 ceramics
32. In-gap states and strain-tuned band convergence in layered structure trivalent iridate K0.75Na0.25IrO2
33. Relaxor ferroelectric ceramics with excellent energy storage density obtained from BT-based ceramics
34. Microwave dielectric properties of ternary molybdate NaSrLn(MoO4)3 (Ln = Nd, Sm) ceramics for LTCC applications
35. NaYW2O8: A novel glass-free microwave dielectric ceramic for LTCC application
36. Microwave dielectric properties of glass free low temperature co-fired LixNa1−xY(MoO4)2(x = 0–0.4) ceramics with temperature stability
37. Effects of packing fraction, lattice vibration, and bond valence on the microwave dielectric properties of low-εr garnet-type Ca3Sc2Ge3O12 ceramics
38. Dielectric ceramics with excellent energy storage properties were obtained by doping 0.92NaNbO3-0.08Bi(Ni0.5Zr0.5)O3 ceramics
39. Sintering behavior, phase composition, microstructure, and dielectric characteristics of garnet-type Ca3Fe2Ge3O12 microwave ceramics
40. Microwave dielectric properties of non-stoichiometric Sr1 + xNd2Al2O7 + x ceramic prepared by reaction-sintering process
41. A Microwave Dielectric Ceramic with Ultra-low Dielectric Constant Prepared by Reaction Sintering Method
42. Novel Sr3Y2Ge3O12 microwave ceramics: Sintering behavior, phase composition, microstructure and dielectric properties
43. Achieving high energy storage density in BaTiO3- (Bi0.5Li0.5)(Ti0.5Sn0.5)O3 lead-free relaxor ferroelectric ceramics
44. Lattice vibrational characteristics and structure-property relationships of SrWO4- x wt.% LiF (x = 0.5–3.0) microwave dielectric ceramics
45. 0.74NaNbO3–0.26Sr(Mg1/3Nb2/3)O3 lead-free dielectric ceramics with high energy storage properties
46. Microwave dielectric performances of a novel low permittivity NaCaLa(MoO4)3 ceramic for LTCC applications
47. Enhanced energy storage properties of 0.93NaNbO3–0.07Bi(Mg0.5Zr0.5)O3 ceramics by doping linear perovskite material
48. Microwave dielectric properties of Ca1.15RE0.85Al0.85Ti0.15O4 (RE=Nd, La, Y) ceramics prepared by the reaction sintering method
49. Sintering behaviour, phase composition, microstructure, and dielectric properties of BaSm2O4 microwave ceramics
50. Novel high εr MNdTiNbO7 (M = Ca, Sr) microwave dielectric ceramics: preparation, phase composition, microstructure, and dielectric performance
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