All Stories

  1. Enhancement of energy-storage characteristics in lead-free ceramics derived from Na0.5Bi0.5TiO3 through multistep engineering
  2. Flexoelectric aging in barium titanate-based ferroelectric ceramics
  3. Improved breakdown strength and energy density of lead-free ceramics via layered structure design
  4. Design Strategies for High‐Performance Piezoelectric Energy Harvesting Devices
  5. Multi-strategy optimization unlocks high energy density in lead-free NBT-CT ceramics
  6. Sc/Nb-modified NBT-ST ceramics with high energy density and efficiency for dielectric energy storage applications
  7. Preparation and properties of high-entropy rare earth niobate LnNbO4 microwave dielectric ceramics
  8. Enhancing piezoelectric properties of BiScO3-PbTiO3 ceramics via- incorporation of Bi(Zn1/2Ti1/2)O3 with high spontaneous polarization
  9. Microstrip dielectric patch antenna fabrication and characterization using ultra low permittivity and low temperature Co-fired LiAlSiO4 ceramics
  10. Enhanced flexoelectric properties in sodium bismuth titanate-based lead-free relaxor ferroelectrics by inducing polar nanoregions
  11. Low-temperature Sintering of LiBxAl1-xSi2O6 Microwave Dielectric Ceramics with Ultra-low Permittivity
  12. Textured PT-based Piezoelectric Ceramics: Development, Status and Challenge
  13. Design and Fabrication of a Patch Antenna for 5G Wireless Communications from a Low-Permittivity LiAlSi2O6-Based Ceramic
  14. Synergetic enhancement in the piezoelectric coefficient and electromechanical factor in PYN-PMN-PT ceramics via texture engineering
  15. Crystal structure, microwave dielectric properties, and far-infrared spectroscopy of a novel low-dielectric constant tremolite ceramic CaZnGe2O6
  16. Near-Zero Temperature Coefficient of Resonance Frequency in Rare-Earth Titanates via the Phase Transition Strategy
  17. Effect of raw material pretreatment and ionic radius on the preparation and microwave dielectric properties of Re2TiO5 ceramics
  18. Processing strategy and composite regulation on dielectric performance in Li2O–Al2O3–B2O3 dielectric systems using SrTiO3
  19. Investigation on the planar Poisson’s ratio of <001>-oriented Pb(In1/2Nb1/2)O3–Pb(Mg1/3Nb2/3)O3–PbTiO3 ceramics
  20. Dielectric properties and excellent energy storage density under low electric fields for high entropy relaxor ferroelectric (Li0.2Ca0.2Sr0.2Ba0.2La0.2)TiO3 ceramic
  21. LiGaSiO4: An ultra-low permittivity dielectric material enabling application in patch antenna
  22. Improving the electric energy storage performance of multilayer ceramic capacitors by refining grains through a two-step sintering process
  23. A wireless ultrasound energy harvester based on flexible relaxor ferroelectric crystal composite arrays for implanted bio-electronics
  24. Entropy-engineered BaTiO3-based perovskite ceramics via A/B site synergetic design to enhance energy storage properties
  25. Re2TiO5: Special dielectric titanates exhibiting abnormally low permittivity and a positive coefficient of resonance frequency
  26. Improved piezoelectric properties of 2–2 piezoelectric single crystal composites for acoustic transducer applications via alternating current polarization
  27. Significant improvement in energy storage for BT ceramics via NBT composition regulation
  28. Tunable Microwave Dielectric Properties in Rare-Earth Niobates via a High-Entropy Configuration Strategy To Induce Ferroelastic Phase Transition
  29. Effective strategy to improve photocatalytic activity in concave Au NRs-Pt-CdS hetero-nanostructure
  30. Design and fabrication of a C-band patch antenna using novel low permittivity SrGa2Si2O8 microwave dielectric ceramic
  31. A review on structure–property relationships in dielectric ceramics using high‐entropy compositional strategies
  32. Conformally Large-Area Single-Crystal Piezocomposites with High Performance for Acoustic Transducers
  33. Synergetic modulations in Ag2CaV4O12 via cation substitution and composite formation to optimize dielectric performances
  34. Synergistic enhanced energy storage performance of NBT-KBT ceramics by K0.5Na0.5NbO3 composition design
  35. Simultaneous enhancement of dielectric properties and temperature stability in BaTiO3‐based ceramics enabling X8R multilayer ceramic capacitor
  36. Alternating current polarization to enhance piezoelectric performance of single crystal composites
  37. Textured BiScO3-PbTiO3 piezoelectric ceramics with both high electromechanical coupling factor and high curie temperature
  38. Achieving high Curie temperature and prominent piezoelectric response via site engineering for BiFeO3-BaTiO3 ceramics
  39. Fabrication of high-efficiency dielectric patch antennas from temperature-stable Sr3−xCaxV2O8 microwave dielectric ceramic
  40. A novel low permittivity microwave dielectric ceramic Sr 2 Ga 2 SiO 7 for application in patch antenna
  41. Electromechanical properties of textured PIN-PSN-PT ceramics under uniaxial stress, hydrostatic pressure, and bias electric field
  42. Synthesis, crystal structure, and characterization of Na2SrV4O12: A low‐firing dielectric vanadate
  43. Effects of unique ion B-site modulation on the structure, dielectric and ferroelectric properties of NBT-BT based ceramics
  44. Boron substitution in LiAlO2 to facilitate densification and tune dielectric properties
  45. Synergistic Enhanced Energy Storage Performance of Nbt-Kbt Ceramics by K0.5na0.5nbo3 Composition Design
  46. Effect of Grain Size on Flexoelectricity
  47. Na2CaTi2Ge3O12: An anti-reductive garnet ceramic with high quality factor and chemical compatibility with Cu/Ag electrodes for low temperature co-fired application
  48. Phase evolution, electrical properties, and conductivity mechanism in LiNbWO6
  49. Controllable semiconductor flexoelectricity by interface engineering
  50. High dielectric permittivity and ultralow dielectric loss in Nb-doped SrTiO3 ceramics
  51. Influence of filler characteristics on the performance of dental composites: A comprehensive review
  52. Origin of defects induced large flexoelectricity in ferroelectric ceramics
  53. Novel low-εr and lightweight LiBO2 microwave dielectric ceramics with good chemical compatibility with silver
  54. The flexoelectric transition in CaCu3Ti4O12 material with colossal permittivity
  55. Defect engineering in rare‐earth‐doped BaTiO3 ceramics: Route to high‐temperature stability of colossal permittivity
  56. Structure and relaxor ferroelectric behavior of the novel tungsten bronze type ceramic Sr5BiTi3Nb7O30
  57. Principal element design of garnets to access structure stability and excellent microwave dielectric properties
  58. Lowered sintering temperature and modulated microwave dielectric properties in Mg2SiO4 forsterite via Ge substitution
  59. Crystal structure, phonon characteristics, and dielectric properties of CaMgGe2O6: A novel diopside microwave dielectric ceramic
  60. Na2CaV4O12: A low-temperature-firing dielectric with lightweight, low relative permittivity, and dielectric anomaly around 515 C
  61. Interplay of defect dipole and flexoelectricity in linear dielectrics
  62. Compositional design, structure stability, and microwave dielectric properties in Ca3MgBGe3O12 (B = Zr, Sn) garnet ceramics with tetravalent cations on B-site
  63. The high piezoelectricity and thermal stability of high-temperature piezoelectric ceramics BiFeO3–0.25BaTiO3–xBi0.5K0.5TiO3 near the MPB
  64. Achieving High Curie Temperature and Prominent Piezoelectric Response Via Synergistic Effect of Site Engineering for Bifeo3-Batio3 Ceramics
  65. Na2cati2ge3o12: An Anti-Reductive Garnet Ceramic with High Quality Factor and Chemical Compatibility with Cu/Ag Electrodes for Low Temperature Co-Fired Application
  66. The Quantizable Contribution of Epdd, Sblc, and Iblc Effects to Colossal Permittivity in La-Doped Batio3 Ceramic
  67. Compositional modulation and annealing treatment in BaTiO3 to simultaneously achieve colossal permittivity, low dielectric loss, and high thermal stability
  68. Influence of cation order on crystal structure and microwave dielectric properties in xLi4/3Ti5/3O4-(1-x)Mg2TiO4 (0.6 ≤ x ≤ 0.9) spinel solid solutions
  69. Phase transformation and ionic conductivity mechanism of a low-temperature sintering semiconductor Na2CaV4O12
  70. Lowered sintering temperature and improved microwave dielectric properties in a vanadium tantalate via in-situ adjusting V5+/Ta5+ molar ratio
  71. Ultralow-Temperature Synthesis and Densification of Ag2CaV4O12 with Improved Microwave Dielectric Performances
  72. A-site compositional modulation in barium titanate based relaxor ceramics to achieve simultaneously high energy density and efficiency
  73. Compositional modulation in ZnGa2O4 via Zn2+/Ge4+ co-doping to simultaneously lower sintering temperature and improve microwave dielectric properties
  74. Low-temperature sintering, dielectric performance, and far-IR reflectivity spectrum of a lightweight NaCaVO4 with good chemical compatibility with silver
  75. Factors affecting the piezoelectric performance of ceramic-polymer composites: A comprehensive review
  76. Local structural heterogeneity induced large flexoelectricity in Sm-doped PMN–PT ceramics
  77. Improvements on sintering behavior and microwave dielectric properties of Li4WO5 ceramics through MgO modification
  78. Synthesis and microwave dielectric properties of an electronic ceramic Y2WO6 for wireless communications
  79. Evolution of the structure, dielectric and ferroelectric properties of Na0.5Bi0.5TiO3-added BaTiO3–Bi(Mg2/3Nb1/3)O3 ceramics
  80. Perovskite MAPb(Br1−Cl )3 single crystals: Solution growth and electrical properties
  81. Synthesis of LiBGeO4 using compositional design and its dielectric behaviors at RF and microwave frequencies
  82. Influence of Lithium Substitution for Zinc on Crystal Structure and Microwave Dielectric Properties of Willemite Li2x Zn2−x GeO4
  83. Polar molecules realignment in CH3NH3PbI3 by strain gradient
  84. (1-x)Li4WO5-xLiF: A novel oxyfluoride system and their microwave dielectric properties
  85. A low-firing melilite ceramic Ba2CuGe2O7 and compositional modulation on microwave dielectric properties through Mg substitution
  86. Low temperature synthesis and dielectric characterisation of La2Mo2O9 ceramic at RF and microwave frequencies
  87. Improvement in thermal stability of resonance frequency of LiCa3MgV3O12 ceramics through compositional modulation
  88. Atomic-scale origin of ultrahigh piezoelectricity in samarium-doped PMN-PT ceramics
  89. An ultra-low-firing NaBi3V2O10 ceramic and its dielectric properties at RF and microwave frequency bands
  90. Revisiting the structural stability and electromechanical properties in lead zinc niobate-lead titanate-barium titanate (PZN-PT-BT) ternary system
  91. Structure and microwave dielectric properties of Ba3Nb4-4Ti4+5O21 ceramics with medium-high permittivity
  92. Two low-permittivity melilite ceramics in the SrO-MO-GeO2 (M = Mg, Zn) system and their temperature stability through compositional modifications
  93. Influence of Ti4+ substitution for Ta5+ on the crystal structure, Raman spectra, and microwave dielectric properties of Ba3Ta4-4xTi4+5xO21 ceramics
  94. NaCa4V5O17: A low-firing microwave dielectric ceramic with low permittivity and chemical compatibility with silver for LTCC applications
  95. Tunable microwave dielectric properties in SrO‐V2O5 system through compositional modulation
  96. Non-linear behavior of flexoelectricity
  97. Deep learning-based semantic segmentation of grain morphologies in ceramics
  98. Structure, microwave dielectric performance, and infrared reflectivity spectrum of olivine‐type Mg2Ge0.98O4 ceramic
  99. Effects of Sr2+ substitution on the crystal structure, Raman spectra, bond valence and microwave dielectric properties of Ba3-xSrx(VO4)2 solid solutions
  100. Large flexoelectric response in PMN-PT ceramics through composition design
  101. Phase evolution, far-infrared spectra, and ultralow loss microwave dielectric ceramic of Zn2Ge1+xO4+2x (− 0.1 ≤ x ≤ 0.2)
  102. Enhancement of the cation order and the microwave dielectric properties of Li2ZnTi3O8 through composition modulation
  103. Structure, microwave dielectric properties, and infrared reflectivity spectrum of olivine type Ca2GeO4 ceramic
  104. Two novel low permittivity microwave dielectric ceramics Li2TiMO5 (M = Ge, Si) with abnormally positive τ
  105. High rhombohedral to tetragonal phase transition temperature and electromechanical response in Pb(Yb1/2Nb1/2)O3-Pb(Sc1/2Nb1/2)O3-PbTiO3 ferroelectric system near the morphotropic phase boundary
  106. Structural, infrared reflectivity spectra and microwave dielectric properties of the Li7Ti3O9F ceramic
  107. Crystal structure, Raman spectroscopy and microwave dielectric properties of Li1+xZnNbO4 (0 ≤ x ≤ 0.05) ceramics
  108. Crystal structure and dielectric properties of germanate melilites Ba2MGe2O7 (M = Mg and Zn) with low permittivity
  109. Microstructure and microwave Dielectric Properties of Sm0.5Y0.5VO4Ceramics
  110. Microwave dielectric properties and infrared reflectivity spectra analysis of two novel low-firing AgCa2B2V3O12 (B = Mg, Zn) ceramics with garnet structure
  111. High-temperature dielectric relaxation mechanism in Ba4SmFe0.5Nb9.5O30 tungsten bronze ceramics
  112. LiYGeO4: Novel low-permittivity microwave dielectric ceramics with intrinsic low sintering temperature
  113. Ultra-Low Loss Microwave Dielectric Ceramic Li2Mg2TiO5 and Low-Temperature Firing Via B2O3 Addition
  114. Ultralow temperature cofired BiZn2 VO6 dielectric ceramics doped with B2 O3 and Li2 CO3 for ULTCC applications
  115. Phase formation and microwave dielectric properties of BiMVO5 (M = Ca, Mg) ceramics potential for low temperature co-fired ceramics application
  116. Structural, thermal and microwave dielectric properties of the novel microwave material Ba 2 TiGe 2 O 8
  117. Low-temperature sintering and thermal stability of Li2 GeO3 -based microwave dielectric ceramics with low permittivity
  118. A reduced sintering temperature and improvement in the microwave dielectric properties of Li2Mg3TiO6 through Ge substitution
  119. Li2AGeO4 (A = Zn, Mg): Two novel low-permittivity microwave dielectric ceramics with olivine structure
  120. SrV2O6: An ultralow-firing microwave dielectric ceramic for LTCC applications
  121. Ultralow Loss CaMgGeO4 Microwave Dielectric Ceramic and Its Chemical Compatibility with Silver Electrodes for Low-Temperature Cofired Ceramic Applications
  122. Ultrahigh piezoelectricity in ferroelectric ceramics by design
  123. Dielectric properties of Ln2O3-WO3 ceramics at microwave frequencies
  124. Reaction sintering of a rock salt structured Li4WO5 ceramic and its microwave dielectric properties
  125. Cu3Mo2O9: An Ultralow-Firing Microwave Dielectric Ceramic with Good Temperature Stability and Chemical Compatibility with Aluminum
  126. Low temperature sintering and microwave dielectric properties of Zn3Mo2O9 ceramic
  127. Low-firing and temperature stable microwave dielectric ceramics: Ba2 LnV3 O11 (Ln = Nd, Sm)
  128. Two novel ultralow temperature firing microwave dielectric ceramics LiMVO6 (M = Mo, W) and their chemical compatibility with metal electrodes
  129. Effects of Zn non-stoichiometry on the phase evolution and microwave dielectric properties of Li2Zn1−xGe3O8 (0 ≤ x ≤ 0.2) spinels
  130. Microwave dielectric properties of Na2Ba1-Li2Ti6O14 ceramics and their chemical compatibility with silver
  131. Two low-firing microwave dielectric ceramics Na2LnMg2V3O12 (Ln = Pr, Yb) and their chemical compatibility with silver
  132. Effects of barium substitution on the sintering behavior, dielectric properties of Ca2Nb2O7ferroelectric ceramics
  133. Microwave dielectric properties in the Li4+Ti5O12 (0 ≤ x ≤ 1.2) ceramics
  134. Sintering Behavior, Microstructure, and Microwave Dielectric Properties of Li4(1+x)WO5 (0 ≤ x ≤ 0.08)
  135. Flexible and low cost lead free composites with high dielectric constant
  136. Dielectric relaxation and Maxwell-Wagner interface polarization in Nb2O5 doped 0.65BiFeO3–0.35BaTiO3 ceramics
  137. A novel low-firing microwave dielectric ceramic Li 2 ZnGe 3 O 8 with cubic spinel structure
  138. Preparation, crystal structure, and dielectric characterization of Li2W2O7ceramic at RF and microwave frequency range
  139. Two novel low-firing Na2AMg2V3O12(A=Nd, Sm) ceramics and their chemical compatibility with silver
  140. Two novel low-firing germanates Li 2 MGe 3 O 8 (M = Ni, Co) microwave dielectric ceramics with spinel structure
  141. Temperature‐stable unfilled tungsten bronze dielectric ceramics: Ba 3.5 Sm 1.5 Fe 0.75 Nb ...
  142. Preparation, Crystal Structure and Microwave Dielectric Properties of Rare-Earth Vanadates: ReVO4 (Re = Nd, Sm)
  143. A low-firing Ca 5 Ni 4 (VO 4 ) 6 ceramic with tunable microwave dielectric properties and chemical compatibility with Ag
  144. Relaxor behavior and ferroelectric properties of a new Ba 4 SmFe 0.5 Nb 9.5 O 30 tungsten bronze ceramic
  145. A novel ultra-low temperature cofired Na2BiZn2V3O12 ceramic and its chemical compatibility with metal electrodes
  146. Phase transition, dielectric relaxation and piezoelectric properties of bismuth doped La2Ti2O7 ceramics
  147. Structure and Microwave dielectric properties of a novel temperature stable low-firing Ba 2 LaV 3 O 11 ceramic
  148. Temperature stable microwave dielectric ceramics in LiCa3−x Sr x MgV3O12 ceramics
  149. Microwave dielectric properties of novel glass-free low temperature firing ACa 2 Mg 2 V 3 O 12 (A=Li, K) ceramics
  150. Li2Zn2W2O9: A novel low-temperature sintering microwave dielectric ceramic with corundum structure
  151. Dielectric and impedance spectroscopy analysis of LiCa3MgV3O12 with garnet structure
  152. Low-firing and microwave dielectric properties of Na 2 YMg 2 V 3 O 12 ceramic
  153. Li 4 WO 5 : A temperature stable low-firing microwave dielectric ceramic with rock salt structure
  154. A Novel Temperature Stable Microwave Dielectric Ceramic with Garnet Structure: Sr2 NaMg2 V3 O12
  155. A novel low-firing microwave dielectric ceramic NaMg4V3O12 and its chemical compatibility with silver electrode
  156. BaTa2V2O11: A novel low fired microwave dielectric ceramic
  157. A novel low-firing BiZn2VO6 microwave dielectric ceramic with low loss
  158. Dielectric relaxation and electrical conductivity in Ca5Nb4TiO17 ceramics
  159. Microwave dielectric properties of temperature stable (1 − x)BaCaV2O7–xTiO2 composite ceramics
  160. A Novel Low-Firing and Low Loss Microwave Dielectric Ceramic Li2 Mg2 W2 O9 with Corundum Structure
  161. Characterization and microwave dielectric properties of BiCa2VO6 ceramic
  162. Sintering behavior and microwave dielectric properties of LiMVO4 (M = Mg, Zn)
  163. Dielectric and complex impedance analysis of Sr5Nb4TiO17 ceramic with perovskite-like structure
  164. Dielectric and temperature stable energy storage properties of 0.88BaTiO3–0.12Bi(Mg1/2Ti1/2)O3 bulk ceramics
  165. Phase transformation and microwave dielectric properties of Ba4LiTa3−xSbxO12
  166. Phase composition and microwave dielectric properties of low-firing Li2A2W3O12 (A = Mg, Zn) ceramics
  167. Effects of sintering temperature and Ca substitution on microwave dielectric properties of Mg3V2O8
  168. Low temperature firing and microwave dielectric properties of BaCaV2O7 ceramics
  169. Study on properties of tantalum-dopedLa2Ti2O7ferroelectric ceramics
  170. Reduced thermal conductivity by nanoscale intergrowths in perovskite like layered structure La2Ti2O7
  171. Microwave Dielectric Properties of a Low‐Firing Ba 2 BiV 3 O 11 Ceramic
  172. Relaxor Ferroelectric BaTiO3-Bi(Mg2/3Nb1/3)O3Ceramics for Energy Storage Application
  173. Processing and bioactivity of 45S5 Bioglass®-graphene nanoplatelets composites
  174. Microwave dielectric properties of CaO–La2O3–Nb2O5–TiO2 ceramics
  175. Microwave dielectric properties of La3Ti2TaO11 ceramics with perovskite-like layered structure
  176. Complex impedance analysis on a layered perovskite-like ceramic: La3Ti2TaO11
  177. Microwave dielectric properties of temperature stable Li2ZnxCo1−xTi3O8 ceramics
  178. Preparation, structure and dielectric properties of tungsten bronze ferroelectrics in SrO-Eu2O3-TiO2-Nb2O5 system
  179. Temperature-stable and low loss Fe-containing dielectrics in BaO-Ln2O3-Fe2O3-Ta2O5 system
  180. Ba4Ln2Fe2Nb8O30(Ln = Eu, Gd) Ferroelectric Ceramics
  181. Effects of BaCu(B 2 O 5 ) Addition on Phase Transition, Sintering Temperature, and Microwave Properties of Ba 4 ...
  182. Two novel A4B3O12-type microwave ceramics with high-Q and near-zero τf
  183. Sr 4− m La m Ti ...
  184. Characterization and dielectric properties of Sr4M2Ti4Ta6O30 (M=Pr and Eu) ceramics
  185. Dielectric and ferroelectric properties of tungsten bronze ferroelectrics in SrO–Pr2O3–TiO2–Nb2O5 system
  186. Ba 4 LiNb 3− x Ta x ...
  187. Dielectric Properties of Ba 4 Sm 2 Fe 2 M 8 O ...
  188. Ba 4 Ln 2 Fe 2 Ta 8 O 3...
  189. Preparation, characterization and dielectric properties of Sr5RTi3Ta7O30 (R=Pr and Eu) ferroelectric ceramics
  190. Dielectric and ferroelectric properties of Ba<inf>4</inf>Gd<inf>2</inf>Fe<inf>2</inf>Nb<inf>8</inf>O<inf>30</inf> with filled tungsten-bronze structure