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A novel Tb^(3+) and Eu^(3+) co-doped dual-emitting phosphate K_(3)SrBi(P_(2)O_(7))_(2) phosphor for application in FIR thermometers
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作者 Baochen Wang Shifeng Sun +5 位作者 Zeqi Li Zongwang Li Weiwei Lin Chao Zeng Yan-gai Liu ruiyu mi 《Journal of Rare Earths》 SCIE EI CAS CSCD 2024年第3期455-463,I0001,共10页
Rare earth co-doped phosphor for fluorescence intensity ratio(FIR) thermometer has gained increasing attention in recent years. Herein, the novel Tb^(3+)and Eu^(3+)co-doped K_(3)SrBi(P_(2)O_(7))_(2)(KSBP) phosphate ph... Rare earth co-doped phosphor for fluorescence intensity ratio(FIR) thermometer has gained increasing attention in recent years. Herein, the novel Tb^(3+)and Eu^(3+)co-doped K_(3)SrBi(P_(2)O_(7))_(2)(KSBP) phosphate phosphors were reported. The crystal structure of the title phosphor was determined using Rietveld refinement and proved to have a three-dimensional structure. The time-resolved spectroscopy reveals that there is almost no energy transfer between Tb^(3+)and Eu^(3+). More importantly, Tb^(3+)and Eu^(3+)emissions show different thermal quenching behaviors, which claims the potential of this material for application in optical thermometer. The FIR of the typical KSBP:0.02Tb^(3+),0.04Eu^(3+)sample demonstrates a polynomial relationship as a function of temperature and the absolute and relative sensitivity are0.025 K^(-1) and 0.59%/K, respectively. In general, our study reports a novel and potential KSBP:Tb^(3+),Eu^(3+)phosphate phosphor that is promising for use in high-sensitive FIR thermometers. 展开更多
关键词 PHOSPHOR THERMOMETER Fluorescence intensity ratio Thermal stability Rare earths
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Multi-site occupancies and dependent photoluminescence of Ca_(9)Mg_(1.5)(PO_(4))_(7):Eu^(2+) phosphors:A bifunctional platform for optical thermometer and plant growth lighting 被引量:2
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作者 ruiyu mi Yan-gai Liu +4 位作者 Lefu Mei Zhaohui Huang minghao Fang Xiaowen Wu Xin min 《Journal of Rare Earths》 SCIE EI CAS CSCD 2023年第10期1503-1511,I0002,共10页
Herein,we demonstrate an optical thermometer based on single Eu^(2+)doped Ca_(9)Mg_(1.5)(PO_4)_7 phosphors,which were prepared by traditional solid-state reaction technique under a reduction atmosphere.Considerations ... Herein,we demonstrate an optical thermometer based on single Eu^(2+)doped Ca_(9)Mg_(1.5)(PO_4)_7 phosphors,which were prepared by traditional solid-state reaction technique under a reduction atmosphere.Considerations on the bond length obtained by the crystal structure refinement and the dependent photoluminescence performances allow to assign the two distinct emission bands to Eu^(2+)ions occupied Cal-Ca3 and Mg2 sites.Moreover,the blue and red emitting bands perfectly match with the photosynthetic action spectrum,which can enhance the indoor plant photosynthesis.The optimal doping content of Eu^(2+)ions in this Ca_(9)Mg_(1.5)(PO_(4))_(7)system is 3 mol%.The corresponding concentration quenching effect is verified as dipole-dipole interaction with the critical distance of 3.315 nm.Furthermore,by exploiting the fluorescence intensity technique,the optical thermal resistance properties of Ca_(9)Mg_(1.5)(PO_4)_7:Eu^(2+)are identified based on the temperature dependent emission spectra in a range of 303-523 K.In detail,the maximum absolute and relative sensitivity S_(a)and S_(r)of Ca_9Mg_(1.5)(PO_(4))_(7):Eu^(2+)thermometer are as high as 0.637%/K and 0.3155 K^(-1),respectively.Consequently,the Eu^(2+)doped Ca_(9)Mg_(1.5)(PO_(4))_(7)phosphors establish a bifunctional platfo rm for both optical the rmometer and plant growth lighting via multi-site occupancies. 展开更多
关键词 Eu^(2+)site occupancies PHOTOLUMINESCENCE Plant growth lighting Fluorescence intensity ratio THERMOMETER Rare earths
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3D-printed mechanically strong and extreme environment adaptable boron nitride/cellulose nanofluidic macrofibers 被引量:1
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作者 Le Yu Tingting Gao +6 位作者 ruiyu mi Jing Huang Weiqing Kong Dapeng Liu Zhiqiang Liang Dongdong Ye Chaoji Chen 《Nano Research》 SCIE EI CSCD 2023年第5期7609-7617,共9页
Fibrous nanofluidic materials are ideal building blocks for implantable electrode,biomimetic actuator,wearable electronics due to their favorable features of intrinsic flexibility and unidirectional ion transport.Howe... Fibrous nanofluidic materials are ideal building blocks for implantable electrode,biomimetic actuator,wearable electronics due to their favorable features of intrinsic flexibility and unidirectional ion transport.However,the large-scale preparation of fibrous nanofluidic materials with desirable mechanical strength and good environment adaptability for practical use remains challenging.Herein,by fully taking advantage of the attractive mechanical,structural,chemical features of boron nitride(BN)nanosheet and nanofibrillated cellulose(NFC),a scalable and cost-effective three-dimensional(3D)printed macrofiber featuring abundant vertically aligned nanofluidic channels is demonstrated to exhibit a good combination of high tensile strength of 100 MPa,thermal stability of up to 230℃,ionic conductivity of 1.8×10^(−4)S/cm at low salt concentrations(<10^(−3)M).In addition,the versatile surface chemistry of cellulose allows us to stabilize the macrofiber at the molecular level via a facile postcross-linking method,which eventually enables the stable operation of the modified macrofiber in various extreme environments such as strong acidic,strong alkaline,high temperature.We believe this work implies a promising guideline for designing and manufacturing fibrous nanodevices towards extreme environment operations. 展开更多
关键词 three-dimensional(3D)printing NANOFLUIDIC boron nitride CELLULOSE macrofiber
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层状K_(x)MnO_(2)基钾离子电池正极材料的研究现状及发展趋势
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作者 杨淑洁 闵鑫 +4 位作者 米瑞宇 吴小文 刘艳改 黄朝晖 房明浩 《中国科学:化学》 CAS CSCD 北大核心 2022年第12期2156-2167,共12页
钾离子电池具有资源丰富、价格便宜等优点,并且与锂离子电池原理相似,是目前取代锂离子电池成为大型储能系统合适的候选者.正极材料对钾离子电池性能起着关键作用,其中层状K_(x)MnO_(2)基正极材料因其高比容量、环境友好、成本低廉、独... 钾离子电池具有资源丰富、价格便宜等优点,并且与锂离子电池原理相似,是目前取代锂离子电池成为大型储能系统合适的候选者.正极材料对钾离子电池性能起着关键作用,其中层状K_(x)MnO_(2)基正极材料因其高比容量、环境友好、成本低廉、独特的二维钾离子扩散通道而备受关注.但大尺寸的K^(+)在充放电过程中的反复脱嵌会导致结构破坏,并且Mn^(3+)产生的Jahn-Teller效应导致结构畸变,容量快速下降,商业应用难度较大.本文从K_(x)MnO_(2)材料层状结构调控出发,系统总结了K_(x)MnO_(2)基正极材料的制备方法,重点综述了单金属掺杂、双金属掺杂和碱金属掺杂等三种掺杂改性策略,总结阐述了K_(x)MnO_(2)基正极材料在现阶段研究中存在的主要挑战并进一步展望了其未来发展方向,可望为开发高效稳定的钾离子电池提供理论参考. 展开更多
关键词 钾离子电池 正极材料 制备方法 掺杂改性
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