Dissertation > Excellent graduate degree dissertation topics show
Preparation of NaY(Gd)F4:Yb3+,Er3+ Up-conversion Nanoparticles and Their Application in Biodetection
Author: LiuXiaoLin
Tutor: LiuYiChun
School: Northeast Normal University
Course: Materials Physics and Chemistry
Keywords: Gd3+ hexagonal phase NaYF4 solvothermal method biologicaldetection
CLC:
Type: Master's thesis
Year: 2013
Downloads: 103
Quote: 0
Read: Download Dissertation
Abstract
|
In recent years, rare earth up-conversion(UC) luminescent labeling materialshave attracted much attention due to their unique physical and chemical properties.One of the hot research topics in UC nanomaterials is to find out some novel efficientsynthesis methods for improving the UC luminescence efficiency. Among the varioushost materials, NaYF4matrix is one of those that have the highest UC luminescenceefficiency due to its low phonon energy. Herein, NaYF4matrix material is chosen. Inorder to further improve the UC luminescence efficiency, Gd3+is introduced.Solvothermal method is utilized to synthesize water-soluble NaY(Gd)F4: Yb3+,Er3+nanoparticles, which are used as luminescent probes to realize the sensitivedetection of proteins. The main research contents are as follows:Water-soluble NaY(Gd)F4: Yb3+, Er3+nanoparticles were obtained bysolvothermal method. The influence of Gd3+doping concentrations on the structure,morphology and luminescent properties of the UC nanoparticles were investigated.The results indicated that Gd3+favored the phase transformation from the cubic phaseto the hexagonal phase. And the particle size increased gradually at first anddecreased afterwards with the increase of Gd3+doping concentration. The UCluminescent efficiency was related to the crystallographic phase and the size ofnanoparticles. More hexagonal phase could enhance the UC luminescence, while thedecrease of the particle size would reduce the luminescense. The increasing of thereaction time also facilitated phase transformation, thus enhancing the UCluminescence. Through the adjustment of the reaction parameters, the pure hexagonalphase of NaY(Gd)F4: Yb3+, Er3+was finally obtained.Utilizing the Glutaraldehyde method, NaY(Gd)F4: Yb3+, Er3+UC nanomaterialswere coupled with monoclonal antibodies. The sandwich-structured biodetectionstrategy was designed. High sensitive detection of proteins was achieved using the UCluminescence as the detection signals.
|
Related Dissertations
- Of Bi N Co-doped TiO \u003csub\u003e 2 \u003c/ sub\u003e of the preparation and performance,O614.411
- Investigation of Fabrication, Characterization and Property of Fuctional Titanium Dioxide Nanoporous Materials,TB383.1
- Up-conversion Emissions and Energy Transfer Processes in 12CaO·7Al2O3: Gd3+/Er3+/Yb3+ Phosphor,O482.31
- Study on Preparation of Carbon/Carbon Composite Materials and Their Electrochemical Properties,TB332
- Nanoparticles suspensions preparation and thermodynamic properties of,TB383.1
- SrIn_2O_4: Eu ~ (3) doped Gd ~ (3) or Sm ~ (3) light-emitting properties of,O482.31
- Synthesis,Microstructure and Thermoelectric Properties of Ternary Compounds in the SnTe-Bi2Te3 System,TB34
- Synthesis, Structure and Properties of Polymetal Selenide/Tellurium Containing Organic Ligand,O627
- Preparation、Stabilization and the Mechanism of Monodisperse Emulsifer-free MMA/St Copolymer Nanoparticle Latex with Solvothermal Method,O648.2
- Research for Preparation and Application of SiO2/TiO2 Composite in Micro-polluted Water,TU991.2
- Investigation on Preparation Technology and Luminescent Property of the Oxyfluoride Glasses Doped with Rare Earth Ions,TQ171.1
- Oxide Nanopowders Prepared via Hydrothermal/solvothermal Method and Their Applications in Piezoelectric Ceramics,TB383.1
- Researches on Synthesis and Luminescence of Rare Earth Ions Doped Micro/Nano Luminescent Materials Based on Energy Transfer,O482.31
- Synthesis and Microwave Absorbing Properties of Magnetic Propertie/polyaniline Composites,O482.5
- Preparation and Photoluminescent Propertics of Eu3+,Tb3+Activatcd Oxysalt-based Inminescence Materials,O482.31
- Synthesis and Luminescence Properties of Rare-earth Doped in Phosphates Via Sotvothermal Method,O482.31
- Fabrication of Al-Doped ZnO Transparent Conductive Thin Films by Solvothermal Method,O484.1
- Size Control and Mechanism Research of LiFePO4Nano-Materials,O614.111
- Study on the synthesis and photocatalytic hydrogen evolution performance of controllable morphology of titanium nitride,TQ116.2
- Green Synthesis and Process Investigation of Iron Sulfide Series Photoelectric Materials,TQ138.1
- Preparation and Electrochemical Properties of TiO2Anode Materials for Lithium-ion Battery,TQ134.11
CLC: >
© 2012 www.DissertationTopic.Net Mobile
|