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Featured researches published by Jiaqi Long.


Inorganic Chemistry | 2017

Enhanced Luminescence Performances of Tunable Lu3–xYxAl5O12:Mn4+ Red Phosphor by Ions of Rn+ (Li+, Na+, Ca2+, Mg2+, Sr2+, Sc3+)

Jiaqi Long; Yuzhen Wang; Ran Ma; Chaoyang Ma; Xuanyi Yuan; Zicheng Wen; Miaomiao Du; Yongge Cao

A novel red-emitting Lu3Al5O12:Mn4+ (LuAG:Mn4+) phosphor was synthesized by a solid-state reaction. The emission-band position is shifted to red region by gradually increasing the amount of substitution of Lu3+ for Y3+, eventually yielding fully Y3Al5O12:Mn4+ (YAG:Mn4+). The compared structural and optical properties of the phosphors were investigated. From the experimentally measured spectroscopic data, crystal field parameter Dq and Racah parameters B and C are calculated to be 2127, 1464, and 3620 cm-1 in LuAG:Mn4+, respectively. In YAG:Mn4+, Dq, B, and C are calculated to be 2082, 1524, and 3740 cm-1, respectively. Impressively, Ca2+/Li+/Mg2+/Sr2+/Sc3+/Na+ dopants were found to be beneficial for enhancing Mn4+ luminescence, and the related mechanisms were systematically discussed.


Inorganic Chemistry | 2017

M8MgSc(PO4)7:xDy3+ (M = Ca/Sr) Single-Phase Full-Color Phosphor with High Thermal Emission Stability

Jiaqi Long; Fujuan Chu; Yuzhen Wang; Chong Zhao; Wenfeng Dong; Xuanyi Yuan; Chaoyang Ma; Zicheng Wen; Ran Ma; Miaomiao Du; Yongge Cao

Two series of phosphors of Ca8MgSc(PO4)7:Dy3+ and Sr8MgSc(PO4)7:Dy3+ single-phase white-emitting phosphors with high thermal emission stability are synthesized by the high-temperature solid-state reaction. The crystal structure, photoluminescence (PL), PL excitation (PLE), and thermal PL quenching spectra of Ca8MgSc(PO4)7:xDy3+ and Sr8MgSc(PO4)7:xDy3+ were investigated and compared in detail. Upon excitation at 387 nm, M8MgSc(PO4)7:xDy3+ (M = Ca/Sr) showed white emission centered at 480, 571, 660, and 754 nm. The white-emitting Dy-phosphor Ca8MgSc(PO4)7:Dy3+ (CMSP:Dy) had good terminal stability. The emission intensity of Ca8MgSc(PO4)7:Dy3+ still remained 95.2% of that at room temperature at 160 °C, and remained 77.3% at 300 °C under 387 nm excitation.


RSC Advances | 2018

Strongly enhanced luminescence of Sr4Al14O25:Mn4+ phosphor by co-doping B3+ and Na+ ions with red emission for plant growth LEDs

Jiaqi Long; Xuanyi Yuan; Chaoyang Ma; Miaomiao Du; Xiaoli Ma; Zicheng Wen; Ran Ma; Yuzhen Wang; Yongge Cao

Development of a more cost-effective radiation source for use in plant-growing facilities would be of significant benefit for commercial crop production applications. A series of co-doped B3+ and Na+ ions Sr4Al14O25:Mn4+ inorganic luminescence materials which can be used for plant growth were successfully synthesized through a conventional high-temperature solid-state reaction. Powder X-ray diffraction was used to confirm the crystal structure and phase purity of the obtained samples. Then scanning electron microscopy elemental mapping was undertaken to characterize the distribution of the doped ions. Detail investigations on the photoluminescence emission and excitation spectra revealed that emission intensity of tetravalent manganese ions can be well enhanced by monovalent sodium ions and trivalent boron ions under near-ultraviolet and blue excitation. Additionally, crystal field parameters and energies of states are calculated and discussed in detail. Particularly we achieve a photoluminescence internal quantum yield as high as 60.8% under 450 nm blue light excitation for Sr4Al14O25:Mn4+, Na+, B3+. Therefore, satisfactory luminescence properties make these phosphors available to LEDs for plant growth.


Optics Letters | 2016

Longitudinally diode-pumped planar waveguide YAG/Yb:LuAG/YAG ceramic laser at 1030.7 nm.

Chaoyang Ma; Jiangfeng Zhu; Kai Liu; Fei Tang; Jiaqi Long; Zicheng Wen; Ran Ma; Xuanyi Yuan; Wang Guo; Junting Li; Yongge Cao

Composite YAG/15 at. % Yb:LuAG/YAG transparent ceramic planar waveguide was fabricated by a tape casting method and vacuum sintering technology. Under a 970 nm diode laser pumping, the absorbed efficiency of 85.4% was achieved, and efficient CW laser operation at 1030.7 nm was accomplished with a good beam quality with Gaussian spatial profile. A maximum output power of 288 mW was obtained under a pump power of 4.69 W, corresponding to a slope efficiency of 9% and an O-O conversion efficiency of 5%.


Optical Materials Express | 2017

Energy transfer properties and enhanced color rendering index of chromaticity tunable green-yellow-red-emitting Y 3 Al 5 O 12 : Ce 3+ , Cr 3+ phosphors for white light-emitting diodes

Ran Ma; Chaoyang Ma; Jiantao Zhang; Jiaqi Long; Zicheng Wen; Xuanyi Yuan; Yongge Cao

White light-emitting diodes using YAG: Ce3+ phosphors suffer from the deficiency of red component, leading to a low color rendering index (CRI) and a high correlated color temperature (CCT). Herein, a yellow-red single-phase YAG: Ce3+, Cr3+ phosphor was synthesized by a traditional solid-state reaction. Compared with Cr3+ ion single-doped YAG phosphor, the emission intensity in the far-red region of the co-doped YAG: Ce3+, Cr3+ sample increases because of the energy transfer from Ce3+ ions to Cr3+ ions. For sample Y3Al5O12: 0.02Ce3+, 0.008Cr3+ phosphor, the internal and external quantum efficiencies are 58.9% and 46.7%, respectively. And, the fabricated white LED shows a CCT of 6085 K at CIE 1931 coordinate (0.3208, 0.3273). Moreover, the CRI is as high as 77.9 while that of the corresponding Ce3+ single-doped YAG phosphor is only 63.2. Thus, the Ce3+ and Cr3+ co-doped YAG phosphors are suitable for white light-emitting diodes (WLEDs).


Journal of The European Ceramic Society | 2016

Cation diffusion at the interface of composite YAG/Re: LuAG (Re = Nd or Yb) transparent ceramics

Chaoyang Ma; Fei Tang; Jiangfeng Zhu; Zicheng Wen; Yang Yu; Ke Wang; Miaomiao Du; Jiantao Zhang; Jiaqi Long; Xuanyi Yuan; Wang Guo; Yongge Cao


IEEE Photonics Journal | 2017

Spectroscopic Properties and Continuous Wave Laser Performances at 1064 nm of Nd3+: LuAG Transparent Ceramic

Chaoyang Ma; Jiangfeng Zhu; Zhongqi Hu; Zicheng Wen; Jiaqi Long; Xuanyi Yuan; Yongge Cao


Materials Research Bulletin | 2017

Luminescent performances of Mn4+ ions during the phase evolution from MgTiO3 to Mg2TiO4

Jiaqi Long; Chaoyang Ma; Yuzhen Wang; Xuanyi Yuan; Miaomiao Du; Ran Ma; Zicheng Wen; Jiantao Zhang; Yongge Cao


Optical Materials | 2017

High reliable and chromaticity-tunable flip-chip w-LEDs with Ce:YAG glass-ceramics phosphor for long-lifetime automotive headlights applications

Chaoyang Ma; Yongge Cao; Xiaofei Shen; Zicheng Wen; Ran Ma; Jiaqi Long; Xuanyi Yuan


Materials Research Bulletin | 2016

Optical and thermal behaviors of high efficient K2TiF6:Mn4+ red phosphor prepared by modified two-step co-precipitation method

Miaomiao Du; Fei Tang; Jiaqi Long; Chaoyang Ma; Xuanyi Yuan; Jiantao Zhang; Zicheng Wen; Ran Ma; Yongge Cao

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Xuanyi Yuan

Renmin University of China

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Yongge Cao

Renmin University of China

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Zicheng Wen

Renmin University of China

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Chaoyang Ma

Renmin University of China

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Ran Ma

Renmin University of China

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Miaomiao Du

Renmin University of China

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Jiantao Zhang

Renmin University of China

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Yuzhen Wang

Renmin University of China

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Fei Tang

Renmin University of China

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