凝聚态物理学 -- 电介质物理(Condensed Matter Physics -- Dielectric Physics); 功能电子陶瓷与复合材料 (Functional Electronic Ceramics and Composite
- 张家良. HIGH PIEZOELECTRIC PERFORMANCE AND RELEVANT PHYSICAL MECHANISM OF CuO-MODIFIED Ba(Ti0.96Sn04)O-3 CERAMICS. JOURNAL OF ADVANCED DIELECTRICS, 1, 79-84, 2025.
- 高勇. Remarkably strong piezoelectricity of lead-free (K0.45Na 0.55)0.98Li0.02(Nb0.77Ta 0.18Sb0.05)O3 ceramic. Journal of the American Ceramic Society, 94, 2968-2973, 2025.
- 张家良. Polymorphic phase transition and excellent piezoelectric performance of (K0.55Na0.45)(0.965)Li035Nb0.80Ta0.20O3 lead-free ceramics. APPLIED PHYSICS LETTERS, 95, 2025.
- 张家良. Improvement of Physical Properties for KNN- based Ceramics by Modified Two- Step Sintering. Journal of the American Ceramic Society, 97, 759-764, 2025.
- 刘剑. Nb掺杂对还原性烧结的TiO2-δ陶瓷的晶体结构及热电性能的影响. ACTA PHYSICA SINICA, 60, 614-619, 2025.
- 刘剑. Synthesis and thermoelectric properties of Sr0.95La05TiO3-δ-TiO2 solid solutions. Solid State Sciences, 12, 134-137, 2025.
- 刘剑. Enhancement of thermoelectric efficiency in oxygen-deficient Sr 1-x Lax TiO3-δ ceramics. APPLIED PHYSICS LETTERS, 95, 162110-1-162110-3, 2025.
- Qin, Yalin. Domain Configuration and Thermal Stability of (K0.48Na0.52)(Nb0.96Sb04)O3-Bi0.50(Na0.82K0.18)0.50ZrO3 Piezoceramics with High d33 Coefficient. ACS Applied Materials & Interfaces, 8, 7257-7265, 2025.
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                                            (包干项目)高性能铁电材料及器件, 2022-11-01-2025-12-30
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                                            多层次多模式的高校创新方法人才培育体系建设与示范, 2017-10-01-2020-09-30
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                                            超声换能应用的铌酸钾钠基压电陶瓷及其1-3型复合材料的研究, 2019-08-16-2023-12-31
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                                            面向超声换能应用的铌酸钾钠基无铅压电陶瓷及1-3型复合材料的研究, 2019-04-26-2022-06-30
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                                            改性钛酸铜钙基氯化物介电材料及其应用(专利许可), 2008-11-25-2012-11-25
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                                            聚对苯二甲酸丙二醇酯类热可塑性树脂组合物及其成型品, 2009-01-05-2013-01-05
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                                            热可塑树脂组合物及其制品, 2009-01-05-2012-01-05
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                                            自主课题-能源转换与能源存储多晶功能材料, 2016-01-01-2019-12-31
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