“仙桃”虚拟专刊 | 透明陶瓷与发光陶瓷

学术   2024-10-12 09:01   北京  

《先进陶瓷》最新虚拟专刊汇总

《现代技术陶瓷》最新虚拟专刊汇总

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以下汇总了Journal of Advanced Ceramics (仙桃) 2023年1月以来发表的与透明陶瓷、发光陶瓷相关的论文 (文后还附上了《现代技术陶瓷》发表的相关论文)。

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Zhang L, Hu C, Li X, et al. Effect of Sc substitution on the phase composition, microstructure, and properties of (Tb1−xScx)3(Al1−yScy)2Al3O12 transparent ceramicsJournal of Advanced Ceramics, 2024, 13 (9): 1442-1452.
JAC摘要 | 2024-09-1442-1452

Wan X, Tan G, Cai L, et al. Nd3+:YAG–Al2O3 nanocrystalline transparent ceramics with high inflexion concentration quenching of Nd3+ prepared by amorphous crystallization. Journal of Advanced Ceramics, 2024, 13 (8): 1242-1253.
JAC摘要 | 2024-08-1242-1253

Zhang C, Qi J, Zhou X, et al. Designing highly transparent cerium doped Y2O3 ceramics with high mechanical and thermal properties for UV-shielding in extreme conditions. Journal of Advanced Ceramics, 2024, 13 (7): 1032-1042.
JAC摘要 | 2024-07-1032-1042

Yang N, Li Z, Zhou T, et al. A highly sensitive multiple-mode optical thermometer designed in Eu2+/3+ and Li+ co-doped polymorphism compound LaSc3(BO3)4Journal of Advanced Ceramics, 2024, 13 (6): 821-833.
JAC摘要 | 2024-06-0821-0833

Liu X, Yang C, Li Y, et al. High recorded color rendering performance of single-structured Ce,Mn:Y3(Al,Sc)2Al3O12 phosphor ceramics for high-power white LEDs/LDs. Journal of Advanced Ceramics, 2024, 13 (6): 810-820.
JAC摘要 | 2024-06-0810-0820

Yu H-L, Kang W-S, Lee J-H, et al. Transparent high-performance piezoceramics through pressureless sintering. Journal of Advanced Ceramics, 2024, 13 (5): 561-567.
JAC摘要 | 2024-05-0561-0567

Zhang L, Hu D, Li X, et al. Effect of Y substitution on the microstructure, magneto-optical, and thermal properties of (Tb1−xYx)3Al5O12 transparent ceramics. Journal of Advanced Ceramics, 2024, 13 (4): 529-538.
JAC摘要 | 2024-04-0529-0538

Ikesue A, Aung YL. Synthesis and characteristics of transparent Gd2O3 ceramics with cubic structure. Journal of Advanced Ceramics, 2024, 13 (4): 463-468.
JAC摘要 | 2024-04-0463-0468

Shao J, Li X, Liu M, et al. A time-dependent luminescent phosphor of Na2Ba2Si2O7:Eu for multi-level encryption and dynamic information display. Journal of Advanced Ceramics, 2024, 13 (4): 429-436.
JAC摘要 | 2024-04-0429-0436

Ma Y, Li X, Wu L, et al. Preparation of (Lu,Y)3(Al,Sc,Cr)2Al3O12 phosphor ceramics with high thermal stability for near-infrared LED/LD. Journal of Advanced Ceramics, 2024, 13 (3): 354-363.
JAC摘要 | 2024-03-0354-0363

Sang P, Zhang L, Kang J, et al. Composite structure Al2O3/Al2O3–YAG:Ce/YAG ceramics with high color spatial uniformity for white laser lighting. Journal of Advanced Ceramics, 2024, 13 (2): 189-197.
JAC摘要 | 2024-02-0189-0197

Sun Z, Li J-G, Qian H, et al. Optical grade (Gd0.95-xLuxEu0.05)3Al5O12 ceramics with near-zero optical loss: Effects of Lu3+ doping on structural feature, microstructure evolution, and far-red luminescence. Journal of Advanced Ceramics, 2024, 13 (1): 113-123.
JAC摘要 | 2024-01-0113-0123

Fu J, Zhang Y, Feng S, et al. Biphasic (Lu,Gd)3Al5O12-based transparent nanoceramic color converters for high-power white LED/LD lighting. Journal of Advanced Ceramics, 2023, 12 (12): 2331-2344.
JAC摘要 | 2023-12-2331-2344

Yang Z, Zheng S, Xi G, et al. Patterned phosphor-in-glass films with efficient thermal management for high-power laser projection displays. Journal of Advanced Ceramics, 2023, 12 (11): 2075-2086.
JAC摘要 | 2023-11-2075-2086

Zhu D, Wu L, Beitlerova A, et al. Compositional regulation of multi-component GYGAG:Ce scintillation ceramics: Self-sintering-aid effect and afterglow suppression. Journal of Advanced Ceramics, 2023, 12 (10): 1919-1929.
JAC摘要 | 2023-10-1919-1929

Yu Z, Zhao J, Wang Q, et al. Laser spot associated high-saturation phosphor-in-glass film for transmissive and reflective high-brightness laser lighting. Journal of Advanced Ceramics, 2023, 12 (9): 1821-1832.
JAC摘要 | 2023-09-1821-1832

Wu H, Wu H, Pan G-H, et al. Cyan-green-emitting Ca3Sc2Si3O12:Ce3+ transparent ceramics: A promising color converter for high-brightness laser lighting. Journal of Advanced Ceramics, 2023, 12 (9): 1731-1741.
JAC摘要 | 2023-09-1731-1741

Wang X, Wei T, Xu Y, et al. High-entropy perovskite oxides: An emergent type of photochromic oxides with fast response for handwriting display. Journal of Advanced Ceramics, 2023, 12 (7): 1371-1388.
JAC摘要 | 2023-07-1371-1388

An L, Shi R, Mao X, et al. Fabrication of AlON transparent ceramics with Si3N4 sintering additive. Journal of Advanced Ceramics, 2023, 12 (7): 1361-1370.
JAC摘要 | 2023-07-1361-1370

Kosyanov DY, Vornovskikh AA, Shichalin OO, et al. Reactive SPS of Al2O3–RE:YAG (RE = Ce; Ce+Gd) composite ceramic phosphors. Journal of Advanced Ceramics, 2023, 12 (5): 1015-1032.
JAC摘要 | 2023-05-1015-1032

Hua Y, Yu JS, Li L. Rare-earth and transition metal ion single-/co-doped double-perovskite tantalate phosphors: Validation of suitability for versatile applications. Journal of Advanced Ceramics, 2023, 12 (5): 954-971.
JAC摘要 | 2023-05-0954-0971

Zhang L, Hu D, Snetkov IL, et al. A review on magneto-optical ceramics for Faraday isolators. Journal of Advanced Ceramics, 2023, 12 (5): 873-915.
JAC摘要 | 2023-05-0873-0915

Xiang Y, Yang L, Liao C, et al. Thermometric properties of Na2Y2TeB2O10:Tb3+ green phosphor based on fluorescence/excitation intensity ratio. Journal of Advanced Ceramics, 2023, 12 (4): 848-860.
JAC摘要 | 2023-04-0848-0860

Wang L, Ding G, Li S, et al. Broadband orange-emitting Sr3Si8O4N10:Eu2+ phosphor discovered by a modified single-particle-diagnosis approach. Journal of Advanced Ceramics, 2023, 12 (4): 734-746.
JAC摘要 | 2023-04-0734-0746

Lu K, Ye Y, Han W, et al. Defect elimination to enhance photoluminescence and optical transparency of Pr-doped ceramics for self-calibrated temperature feedback windows. Journal of Advanced Ceramics, 2023, 12 (4): 681-694.
JAC摘要 | 2023-04-0681-0694

Zhao L, Cai Z, Wang X, et al. Constructed TiO2/WO3 heterojunction with strengthened nano-trees structure for highly stable electrochromic energy storage device. Journal of Advanced Ceramics, 2023, 12 (3): 634-648.
JAC摘要 | 2023-03-0634-0648

Cheng Z, Liu X, Chen X, et al. Composition and luminescence properties of highly robust green-emitting LuAG:Ce/Al2O3 composite phosphor ceramics for high-power solid-state lighting. Journal of Advanced Ceramics, 2023, 12 (3): 625-633.
JAC摘要 | 2023-03-0625-0633

Liu Q, Pan E, Liu F, et al. (K,Na)NbO3-based lead-free ceramics with enhanced temperature-stable piezoelectricity and efficient red luminescence. Journal of Advanced Ceramics, 2023, 12 (2): 373-385.
JAC摘要 | 2023-02-0373-0385

Fu J, Feng S, Guo Y, et al. Ce3+:Lu3Al5O12–Al2O3 optical nanoceramic scintillators elaborated via a low-temperature glass crystallization route. Journal of Advanced Ceramics, 2023, 12 (2): 268-278.
JAC摘要 | 2023-02-0268-0278

IKESUE A, AUNG YL. Anisotropic alumina ceramics with isotropic optical properties. Journal of Advanced Ceramics, 2023, 12 (1): 72-81.
JAC摘要 | 2023-01-0072-0081


以下是《现代技术陶瓷》近年来发表的与透明陶瓷、发光陶瓷相关的论文:

利建雨, 李家麒, 马猛等. 烧结助剂Li2CO3对钽酸钇激光透明陶瓷热-力-光学性质的影响. 现代技术陶瓷, 2024, 45 (3): 268-278.
《现代技术陶瓷》摘要 | 2024-03-268-278

陈冲, 胡三元, 廖敦明等. 新型WN纤维透明电极的制备及透光导电性能. 现代技术陶瓷, 2024, 45(1): 149-159.
《现代技术陶瓷》摘要 | 2024-01-149-159

黄广华, 周军, 柯善军. 燃烧法和固相法所制备的红褐色陶瓷颜料ZnFe1.2Cr0.8O4的研磨效果研究. 现代技术陶瓷, 2023, 44: 226-237.
《现代技术陶瓷》摘要 | 2023-03-226-237

刘文彬, 赖泽标, 伍玩秋, 等. 热等静压技术在透明陶瓷研究中的应用进展. 现代技术陶瓷, 2023, 44: 117-128.
《现代技术陶瓷》摘要 | 2023-02-117-128

王康, 田洪翼, 杨威, 等. 镁铝尖晶石透明陶瓷的研究进展. 现代技术陶瓷, 2023, 44: 77-116.
《现代技术陶瓷》摘要 | 2023-02-077-116

齐建起, 冯钊, 黄旭,等. Mg-Al-O-N体系中几种典型透明陶瓷材料. 现代技术陶瓷,2020, 41: 231-255.
《现代技术陶瓷》摘要 | 2020-04-231-255

卢帅, 周有福, 苏明毅, 等. 透明AlON陶瓷的研究进展与展望. 现代技术陶瓷,2017, 38: 85-95.
《现代技术陶瓷》摘要 | 2017-02-085-095

邱阳, 陈玉峰, 祖成奎, 等. ITO薄膜的研究进展. 现代技术陶瓷,2016, 37: 303-324.
《现代技术陶瓷》摘要 | 2016-05-303-324


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陈玉峰, 洪长青, 胡成龙, 等. 空天飞行器用热防护陶瓷材料. 现代技术陶瓷,2017, 38: 311-390.
《现代技术陶瓷》摘要 | 2017-05-311-390

陈代荣, 韩伟健, 李思维, 等. 连续陶瓷纤维的制备、结构、性能和应用:研究现状及发展方向. 现代技术陶瓷,2018, 39: 151-222.
《现代技术陶瓷》摘要 | 2018-03-151-222

蔡德龙, 陈斐, 何凤梅, 等. 高温透波陶瓷材料研究进展. 现代技术陶瓷,2019, 40: 4-120.
《现代技术陶瓷》摘要 | 2019-01-004-120

陈政伟, 范晓孟, 黄小萧, 等. 高温吸波陶瓷材料研究进展. 现代技术陶瓷,2020, 41: 1-98.
《现代技术陶瓷》摘要 | 2020-01-001-098

龚江宏. 陶瓷材料脆性断裂的显微结构效应. 现代技术陶瓷, 2021, 42: 287-428.
《现代技术陶瓷》摘要 | 2021-05-287-428

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