Up-conversion luminescence properties of LuVO4: Yb3+/Tm3+/Er3+ submicron materials for high sensitivity temperature probing
暂无分享,去创建一个
Shuang Li | X. Chu | Pengcheng Cai | Xinyan Hu | L. Cao | Boqi Zhang | Z. Wang
[1] Yiquan Wu,et al. High-entropy sesquioxide X2O3 upconversion transparent ceramics , 2020 .
[2] Wei Feng,et al. Biodegradable Inorganic Upconversion Nanocrystals for In Vivo Applications. , 2020, ACS nano.
[3] Yongxiang Li,et al. Highly temperature-sensitive and blue upconversion luminescence properties of Bi2Ti2O7:Tm3+/Yb3+ nanofibers by electrospinning , 2020 .
[4] Dihu Chen,et al. Color tunable upconversion luminescence and optical thermometry properties of mixed Gd2O3:Yb3+/Ho3+/Er3+ nanoparticles prepared via laser ablation in liquid , 2020, Journal of Materials Science: Materials in Electronics.
[5] X. Yao,et al. Winning wide-temperature-range and high-sensitive thermometry by a multichannel strategy of dual-lanthanides in the new tungstate phosphors , 2020 .
[6] Yueqing Gu,et al. Homotypic targeting upconversion nano-reactor for cascade cancer starvation and deep-tissue phototherapy. , 2020, Biomaterials.
[7] M. Balcerzyk,et al. Bimodal Nd-Doped LuVO4 Nanoprobes Functionalized with Polyacrilic Acid for X-Ray Computed Tomography and NIR Luminescent Imaging , 2020, Nanomaterials.
[8] P. C. de Sousa Filho,et al. High-sensitivity dual UV/NIR-excited luminescence thermometry by rare earth vanadate nanoparticles. , 2019, Dalton transactions.
[9] Jinsheng Liao,et al. Tunable upconversion luminescence and optical temperature sensing based on non-thermal coupled levels of Lu3NbO7:Yb3+/Ho3+ phosphors , 2019, Optical Materials.
[10] Xianju Zhou,et al. An optical thermometry based on abnormal negative thermal quenching of the charge transfer band edge , 2019, Journal of Luminescence.
[11] A. Krasnikov,et al. Photoluminescence origin in Bi3+ - doped YVO4, LuVO4, and GdVO4 orthovanadates , 2019, Journal of Luminescence.
[12] Shilong Zhao,et al. Dependence of upconversion emission and optical temperature sensing behavior on excitation power in Er3+/Yb3+ co-doped BaMoO4 phosphors , 2019, Journal of Luminescence.
[13] Jiahua Zhang,et al. Dual-Mode Optical Thermometry Based on the Fluorescence Intensity Ratio Excited by a 915 nm Wavelength in LuVO4:Yb3+/Er3+@SiO2 Nanoparticles. , 2019, Inorganic chemistry.
[14] Xueru Zhang,et al. Optical temperature sensing based on thermal, non-thermal coupled levels and tunable luminescent emission colors of Er3+/Tm3+/Yb3+ tri-doped Y7O6F9 phosphor , 2019, Journal of Alloys and Compounds.
[15] Qiyuan Lin,et al. Optical temperature sensing properties of Er3+/Yb3+ co-doped LuVO4 up-conversion phosphors , 2019, Physica B: Condensed Matter.
[16] Z. Fu,et al. Investigation on the up-conversion luminescence and temperature sensing properties based on non-thermally coupled levels of rare earth ions doped Ba2In2O5 phosphor , 2019, Journal of Luminescence.
[17] Chongfeng Guo,et al. Upconverting LuVO4:Nd3+/Yb3+/Er3+@SiO2@Cu2S Hollow Nanoplatforms for Self-monitored Photothermal Ablation. , 2018, ACS applied materials & interfaces.
[18] Yongshi Luo,et al. Upconversion properties and temperature sensing behaviors in visible and near-infrared region based on fluorescence intensity ratio in LuVO4: Yb3+/Er3+ , 2018, Journal of Alloys and Compounds.
[19] Shilong Zhao,et al. Temperature-dependent emission color and temperature sensing behavior in Tm3+/Yb3+:Y2O3 nanoparticles , 2018 .
[20] Deming Liu,et al. Amplified stimulated emission in upconversion nanoparticles for super-resolution nanoscopy , 2017, Nature.
[21] Lianzhou Jiang,et al. Luminescent LuVO4:Ln3+ (Ln = Eu, Sm, Dy, Er) hollow porous spheres for encapsulation of biomolecules , 2015 .
[22] Huai-jin Zhang,et al. Advances in vanadate laser crystals at a lasing wavelength of 1 micrometer , 2014 .
[23] Baojiu Chen,et al. Upconversion emissions in YAG glass ceramics doped with Tm3+/Yb3+ ions , 2012 .
[24] A. S. Gouveia-Neto,et al. Optical temperature sensing using upconversion fluorescence emission in Er3+/Yb3+-codoped chalcogenide glass , 1998 .