Ultraviolet, blue and singular green upconversion from Gd2Hf2O7 nanocrystals through dopant manipulation
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[1] S. Gupta,et al. Cr3+ assisted energy transfer for Mn2+ doped zinc gallogermanate with narrow and bright green emission , 2021 .
[2] Aizheng Chen,et al. Lanthanides-doped near-infrared active upconversion nanocrystals: Upconversion mechanisms and synthesis , 2021, Coordination Chemistry Reviews.
[3] R. Devi,et al. Narrow-band red-emitting phosphor with negligible concentration quenching for hybrid white LEDs and plant growth applications. , 2021, Dalton transactions.
[4] Xiaogang Liu,et al. Dynamic upconversion multicolour editing enabled by molecule-assisted opto-electrochemical modulation , 2021, Nature Communications.
[5] S. Gupta,et al. Optical nanomaterials with focus on rare earth doped oxide: A Review , 2021, Materials Today Communications.
[6] S. Gupta,et al. Recent Developments on Molten Salt Synthesis of Inorganic Nanomaterials: A Review , 2021 .
[7] S. Gupta,et al. Singular orange emission in Zn2SnO4:Eu3+ , 2020 .
[8] B. Xing,et al. Lanthanide-Doped Upconversion Nanoparticles Meet the Needs for Cutting-Edge Bioapplications: Recent Progress and Perspectives , 2020, ACS Materials Letters.
[9] S. Gupta,et al. Lanthanide spectroscopy in probing structure-property correlation in multi-site photoluminescent phosphors , 2020 .
[10] S. Vaidyanathan,et al. Systematic investigation of Eu3+ activated Na2Ln4(MoO4)7 [Ln = La, Gd and Y] narrow band red emitting phosphors for hybrid white LEDs and plant growth , 2020 .
[11] S. Vaidyanathan,et al. Zero-concentration quenching: a novel Eu3+ based red phosphor with non-layered crystal structure for white LEDs and NaSrY(MoO4)3:Sm3+ based deep-red LEDs for plant growth. , 2020, Dalton transactions.
[12] S. Gupta,et al. Single red emission from upconverting ZnGa2O4:Yb,Er nanoparticles co-doped by Cr3+ , 2020 .
[13] S. Gupta,et al. Thermally Induced Disorder–Order Phase Transition of Gd2Hf2O7:Eu3+ Nanoparticles and Its Implication on Photo- and Radioluminescence , 2019, ACS omega.
[14] Yanmin Yang,et al. Efficient upconversion luminescence from Ba5Gd8Zn4O21:Yb3+, Er3+ based on a demonstrated cross-relaxation process , 2016, Scientific Reports.
[15] Y. Chai,et al. Improved multiphoton ultraviolet upconversion photoluminescence in ultrasmall core-shell nanocrystals. , 2014, Optics letters.
[16] Darrick J. Williams,et al. Cross Relaxation in rare-earth-doped oxyfluoride glasses , 2013 .
[17] Baojiu Chen,et al. Dependence of optical properties on the composition in Er3+-doped xNaPO3–(80 − x)TeO2–10ZnO–10Na2O glasses , 2009 .
[18] Marco Bettinelli,et al. Significance of Yb3+ concentration on the upconversion mechanisms in codoped Y2O3:Er3+, Yb3+ nanocrystals , 2004 .