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Featured researches published by Zhongwen Lu.


Applied Physics Letters | 2012

Transparent Ce:Y3Al5O12 ceramic phosphors for white light-emitting diodes

Nian Wei; Tiecheng Lu; Feng Li; Wei Zhang; Benyuan Ma; Zhongwen Lu; Jianqi Qi

We present our recent achievement of a transparent ceramic able to produce white light when directly combined with commercially available blue light emitting diodes. The photoluminescence properties of ceramic phosphor (Y1-xCex)(3)Al5O12 are studied as a function of doping fraction (x = 0.0005-0.0020). The emission color is tunable by variations of Ce3+ concentration and ceramic phosphor thickness. A maximum luminous efficacy exceeding 93 lm/W at a low correlated color temperature of similar to 4600 K is obtained, which is superior to samples made from commercial phosphor powders. Hence, the present transparent ceramic phosphor is expected to be an ideal candidate for generating white light


Journal of Wuhan University of Technology-materials Science Edition | 2013

Novel phenomenon on valence unvariation of doping ion in Yb:YAG transparent ceramics using MgO additives

Zhongwen Lu; Tiecheng Lu; Nian Wei; Benyuan Ma; Wei Zhang; Feng Li; Yongbing Guan

Yb:YAG nanopowders were synthesized by the alcohol-water co-precipitation method adding MgO as sintering additives. Appropriate amount of MgO adding can restrict the agglomeration and reduce the particle size of Yb:YAG powders. When the MgO content was 0.04wt%, well-dispersed Yb:YAG powders with ellipsoidal particles of less than 100 nm diameter were obtained. The experimental results showed the valence variation of doping ion Yb3+ would not appear when adding MgO as sintering additives, so ceramics showed colorless transparent instead of green due to Yb2+ color center using traditional SiO2 as additives. The transmission of the sintered Yb:YAG ceramics can reach 80.6% even without annealing. Ceramic morphology showed that the grains had uniform-distribution with the size of 10 μm or so, and no impurity and pore existed in the grain boundary and crystalline while using optimal sintering conditions.


Optical Materials | 2013

Improvement of optical properties of Nd:YAG transparent ceramics by post-annealing and post hot isostatic pressing

Wei Zhang; Tiecheng Lu; Benyuan Ma; Nian Wei; Zhongwen Lu; Feng Li; Yongbing Guan; Xingtao Chen; Wei Liu; Lu Qi


Optical Materials | 2012

Effect of annealing on the optical properties of Nd:YAG transparent ceramics

Wei Zhang; Tiecheng Lu; Nian Wei; Benyuan Ma; Feng Li; Zhongwen Lu; Jianqi Qi


Journal of Alloys and Compounds | 2012

Assessment of light scattering by pores in Nd:YAG transparent ceramics

Wei Zhang; Tiecheng Lu; Nian Wei; Yuezhong Wang; Benyuan Ma; Feng Li; Zhongwen Lu; Jianqi Qi


Journal of Alloys and Compounds | 2014

Effect of ball-milling granulation with PVB adhesive on the sinterability of co-precipitated Yb:YAG nanopowders

Xingtao Chen; Tiecheng Lu; Nian Wei; Zhongwen Lu; Wei Zhang; Benyuan Ma; Yongbin Guan; Wei Liu; Fenfen Jiang


Optical Materials | 2015

Effect of air annealing on the color center in Yb:Y3Al5O12 transparent ceramics with MgO as sintering additive

Zhongwen Lu; Tiecheng Lu; Nian Wei; Wei Zhang; Benyuan Ma; Jianqi Qi; Yongbing Guan; Xingtao Chen; Huajun Wu; Yu Zhao


Journal of The European Ceramic Society | 2015

Microstructural sintering evolution and sintering parameters optimization of the silica-doped Nd:YAG ceramics using the co-precipitated raw powder

Benyuan Ma; Tiecheng Lu; Wei Zhang; Nian Wei; Zhongwen Lu; Xingtao Chen; Yanli Shi


Journal of Alloys and Compounds | 2015

Systematic optimization of ball milling for highly transparent Yb:YAG ceramic using co-precipitated raw powders

Xingtao Chen; Tiecheng Lu; Nian Wei; Zhongwen Lu; Lijia Chen; Qinghua Zhang; Gang Cheng; Jianqi Qi


Journal of Luminescence | 2017

Fabrication and spectroscopic properties of Yb/Er:YAG and Yb, Er:YAG transparent ceramics by co-precipitation synthesis route

Xingtao Chen; Yiquan Wu; Nian Wei; Jianqi Qi; Yiyu Li; Qinghua Zhang; Tengfei Hua; Wei Zhang; Zhongwen Lu; Benyuan Ma; Tiecheng Lu

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