Catalog |
name |
Description |
price |
R-M1-8819 |
NaYF4:Er,Yb,Nd UCNPs |
NaYF4:Er,Yb,Nd UCNPs are a type of nanomaterial that are capable of converting lower energy photons into higher energy photons through a process known as upconversion.UCNP has low toxicity, photostability, and the ability to emit light in the near-infrared (NIR) region.This unique property makes UCNPs suitable for various applications, including bioimaging, drug delivery, and sensing. |
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R-M1-8806 |
NaYF4:Yb,Tm@NaYF4(water-soluble core shell upconversion nanoparticle,980 excitation,blue light),10mg |
NaYF4:Yb,Tm@NaYF4 is a Water soluble core-shell upconversion nanoparticles (980 excitation, blue light),material composition: NaYF4:Yb,Tm@NaYF4 .The particle size is 30-40, the concentration is 10mg/ml,the excitation wavelength is 980 nm, the emission wavelength is 365/450/470 nm±15 nm (blue light), and the surface ligand is PAA.Due to the coating of PAA, these nanoparticles are water-soluble.Therefore, high fluorescence efficiency, nano size and hydrophilicity make it a potential application in the field of biological probes. |
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R-M1-8891 |
PVP modified NaYF4:Yb,Er@NaYF4:Nd nanoparticles(808 excitation) |
PVP modified NaYF4:Yb,Er@NaYF4:Nd nanoparticles may find applications in bioimaging, biodetection, photodynamic therapy, and as fluorescent probes due to their unique optical properties and potential for targeted delivery in biological systems. |
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R-M1-9130 |
LiLuF4:Yb/Er nanoparticles(Water Soluble) |
LiLuF4:Yb/Er nanoparticles/LiLuF4:Yb/Er UCNPs/LiLuF4:Yb/Er NPs/LiLuF4:Yb/Er Upconversion Nanoparticles/LiLuF4:Yb,Er Upconversion Nanoparticles present a versatile platform for applications in bioimaging, biological sensing, and optoelectronics, taking advantage of their upconversion luminescence properties to enable advanced imaging, sensitive detection, and energy-efficient lighting technologies. |
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R-M1-9131 |
LiYF4:Yb/Er nanoparticles(Water Soluble) |
LiYF4:Yb/Er nanoparticles;LiYF4:Yb,Er Upconversion Nanoparticles;LiYF4:Yb, Er nanoparticles is a upconversion nanoparticles.LiYF4:Yb/Er nanoparticles possess attractive properties for a range of applications, leveraging their upconversion luminescence capabilities for improved bioimaging, biological sensing, and optoelectronic technologies. |
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R-M1-9132 |
NaErF4@NaLuF4 UCNPs(Water Soluble) |
NaErF4@NaLuF4 UCNPs/NaErF4@NaLuF4 upconversion nanoparticles/NaErF4@NaLuF4 nanoparticle/NaErF4@NaLuF4 NPs showed effective and applicable performance for upconversion luminescence (UCL) imaging, X-ray computed tomography (CT), and high-field T2 magnetic resonance imaging (MRI). This nanomaterial can serve as an excellent theranostic agent for multimodality imaging and image-guided therapy. |
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R-M2-9431 |
SH-PEG1000-core-shell upconversion Nanoparticles,ex980nm,20-30nm |
SH-PEG1000-core-shell upconversion nanoparticles/NaYF4:Yb,Er@NaYF4(SH-PEG1000 modified core-shell ucnps,980 excitation) represent a versatile and promising material.SH-PEG1000-core-shell UCNPs can be used in in vivo imaging due to their NIR excitation and visible emission, which minimizes tissue scattering and absorption.They can serve as carriers for drug molecules, with the PEG layer facilitating biocompatibility and circulation within the bloodstream.UCNPs can generate reactive oxygen species (ROS) upon NIR irradiation, providing a modality for targeted cancer therapy.The photostability of UCNPs allows for their use in biosensors with improved sensitivity and detection limits. |
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R-M1-8041 |
Yb/Er doped Y2O3 nanoparticles(Water soluble upconversion nanoparticles,980 excitation Yellow orange |
Yb/Er Doped Y2O3 nanoparticles (Water soluble upconversion nanoparticles, 980 extraction green light) is a rare earth doped luminescent nanomaterial. |
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R-M1-8129 |
Mesoporous SiO2 @NaYbF4 nanoparticles |
Mesoporous SiO2 @NaYbF4 nanoparticles,Mesoporous silica coated with NaYbF4 nanoparticles is upconversion nanoparticle composites. |
price> |
R-M1-8375 |
NaYbF4:Er,Ce,Zn@NaYF4 |
NaYbF4:Er,Ce,Zn@NaYF4 is a rare earth upconversion luminescent material.We can provide customized nanomaterials. |
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