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[1] Y. Chu, Q. Hu, Y. Zhang, Z. Gao, Z. Fang, L. Liu, Q. Yan, Y. Liu, S. Sun, G. Peng, E. Lewis, J. Ren,* and J. Zhang,* Topological Engineering of Photoluminescence Properties of Bismuth- or Erbium-Doped Phosphosilicate Glass of Arbitrary P2O5 to SiO2 Ratio, Adv. Opt. Mater. 6 (13) (2018) 1800024 (封面)
[2] Z. Gao, S. Guo, X. Lu, J. Orava, T. Wagner, L. Zheng, Y. Liu, S. Sun, F. He, P. Yang, J. Ren,* and J. Yang,* Controlling Selective Doping and Energy Transfer between Transition Metal and Rare Earth Ions in Nanostructured Glassy Solids, Adv. Opt. Mater. 6 (13) (2018) 1701407
[3] Z. Gao, B. Sun, Y. Ji, X. Lu, H. Tian, J. Ren,* S. Guo, J. Zhang *, J. Yang *, X. Meng, and K. Tanaka, Photonic engineering of superbroadband near-infrared emission in nanoglass composites containing hybrid metal and dielectric nanocrystals, Photon. Res. 8(5), 698-706 (2020)
[4] Z. Gao, X. Lu, Y. Chu, S. Guo, L. Liu, Y. Liu, S. Sun, J. Ren,* and J. Yang,* The distribution of rare earth ions in a γ-Ga2O3 nanocrystal-silicate glass composite and its influence on the photoluminescence properties, J. Mater. Chem. C (2018), 6, 2944 (封面)
[5] Q. Hu, Z. Gao, X. Lu, J. Ren,* F. He, Z. Fang, Y. Liu, S. Sun, P. Yang and P. Wang,* Bane to boon: intrinsic defect sensitized photoluminescence from Mn2+ or rare-earth ion doped fluorosilicate photonic glasses, J. Mater. Chem. C (2017), 5, 11806
[6] Y. Zhang, X. Li, Z. Lai, R. Zhang, E. Lewis, A. Azmi, Z. Gao, X. Lu, Y. Chu, Y. Liu, Q. Chai, S. Sun, J. Ren*, and J. Zhang*, Largest Enhancement of Broadband Near-Infrared Emission of Ni2+ in Transparent Nanoglass Ceramics: Using Nd3+ as a Sensitizer and Yb3+ as an Energy-Transfer Bridge, J. Phys. Chem. C (2019), 123(15), 10021-10027
[7] J. Ren*, X. Lu, C. Lin*, and R. K. Jain*, Luminescent ion-doped transparent glass ceramics for mid-infrared light sources [invited], Opt. Express 28(15), 21522-21548 (2020) (邀请综述)
[8] X. Lu, J. Li, L. Yang, J. Ren*, M. Sun, A. Yang, Z. Yang, R. K. Jain, and P. Wang*, Ultrabroad 2.5-5.5 μm mid-Infrared emission from Co2+/Fe2+ codoped nano-chalcogenide glass composite, Opt. Lett. 45(9), 2676-2679 (2020)
[9] Z. Gao, Z. Lai, K. Lu, S. Guo, L. Liu, F. He, P. Yang, J. Ren*, J. Zhang, and J. Yang,* Efficient green upconversion luminescence in highly crystallized ultratransparent nano-glass ceramics containing isotropic KY3F10 nanocrystals, Opt. Lett. 44 (19), 4674-4677 (2019)(网站推荐)
[10] Z. Gao, K. Lu, K. Lu, X. Li, Z. Han, S. Guo, L. Liu, F. He, P. Yang, J. Ren*, J. Zhang, and J. Yang,* Ultrabright single-band red upconversion luminescence in highly transparent fluorosilicate glass ceramics containing KMnF3 perovskite nanocrystals, Opt. Lett. 44 [12], 2959-2961 (2019)
[11] W. Shen, J. Ren*, S. Baccaro, A. Cemmi, and G. Chen, Broadband infrared luminescence in γ-ray irradiated bismuth borosilicate glasses, Opt. Lett. 38[4], 516-518 (2013)
[12] J. Ren, B. Li, G. Yang, W. Xu, Z. Zhang, M. Secu, V. Bercu, H. Zeng, and G. Chen, Broadband near-infrared emission of chromium-doped sulfide glass-ceramics containing Ga2S3 nanocrystals, Opt. Lett. 37 [24], 5043-5045 (2012)