Magnetic and optical tunable microspheres with a magnetite/gold nanoparticle shell
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- Type
- article
- Published
- 2005-05-23
- Cited by
- 98
- References
- 26
- OpenAlex
- https://openalex.org/W2019317794
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:95217658
Keywords
Magnetite, Materials science, Nanoparticle, Shell (structure), Polystyrene
References
- Electrostatic Self-Assembly of Silica Nanoparticle−Polyelectrolyte Multilayers on Polystyrene Latex Particles
- Metallodielectric Colloidal Core−Shell Particles for Photonic Applications
- Multilayer assemblies of silica-encapsulated gold nanoparticles on decomposable colloid templates.
- Synthetic Opals Based on Silica-Coated Gold Nanoparticles
- Preparation and Characterization of Titania-Coated Polystyrene Spheres and Hollow Titania Shells
- Self-assembly of floating magnetic particles into ordered structures: A promising route for the fabrication of tunable photonic band gap materials
- Influence of Polyelectrolyte Multilayer Coatings on Förster Resonance Energy Transfer between 6-Carboxyfluorescein and Rhodamine B-Labeled Particles in Aqueous Solution
- Production of Hollow Microspheres from Nanostructured Composite Particles
- PHOTONIC BAND GAP FORMATION IN CERTAIN SELF-ORGANIZING SYSTEMS
- Planar magnetic colloidal crystals.
- Magnetic Nanocomposite Particles and Hollow Spheres Constructed by a Sequential Layering Approach
- Nanoengineering of inorganic and hybrid hollow spheres by colloidal templating
- Synthesis of Nanosized Gold−Silica Core−Shell Particles
- Magnetic Core–Shell Particles: Preparation of Magnetite Multilayers on Polymer Latex Microspheres
- Effect of the Solution Refractive Index on the Color of Gold Colloids
- Fabrication of Magnetic Luminescent Nanocomposites by a Layer-by-Layer Self-assembly Approach
- Self-assembly and magnetism in core-shell microspheres.
- Preparation and Characterization of Ordered Nanoparticle and Polymer Composite Multilayers on Colloids
- Novel Hollow Polymer Shells by Colloid-Templated Assembly of Polyelectrolytes.
- Optical Properties of Thin Films of Au@SiO2 Particles
Cited by
- Magnificent sea-anemone-like magnetic silica capsules reinforced with carbon nanotubes.
- Iron oxide nanoparticle layer templated by polydopamine spheres: a novel scaffold toward hollow-mesoporous magnetic nanoreactors.
- Preparation of sulfate- and carboxyl-functionalized magnetite/polystyrene spheres for further deposition of gold nanoparticles
- Increasing the Complexity of Magnetic Core/Shell Structured Nanocomposites for Biological Applications
- A facile synthetic route for the preparation of gold nanostars with magnetic cores and their reusable nanohybrid catalytic properties.
- Ultrasensitive DNA monitoring by Au–Fe3O4 nanocomplex
- Tunable fluorescent poly(styrene-co-methacrylic acid)/Au-Aphen hybrid nanoparticles via surface immobilization
- Crucial factors affecting the physicochemical properties of sol–gel produced Fe3O4@SiO2–NH2 core–shell nanomaterials
- State of the art of the bi- and trimetallic nanoparticles on the basis of gold and iron.
- Relaxivities of hydrogen protons in aqueous solutions of gold-coated manganese ferrite nanoparticles
- Magnetic Nanoparticle Superstructures
- pH-Triggered conversion of soft nanocomposites: in situ synthesized AuNP-hydrogel to AuNP-organogel
- Sonochemical Synthesis of Magnetic Protein Container for Targeted Delivery
- Simultaneous intracellular delivery of targeting antibodies and functional nanoparticles with engineered protein G system.
- Robust hybrid nanostructures comprising gold and thiol-functionalized polymer nanoparticles: facile preparation, diverse morphologies and unique properties
- Formation of gold-coated magnetic nanoparticles using TiO_2 as a bridging material
- In situ carbon template-based strategy to fabricate ferrite hollow spheres and their magnetic property
- Bacterial inactivation using silver-coated magnetic nanoparticles as functional antimicrobial agents
- Templated techniques for the synthesis and assembly of plasmonic nanostructures.
- A facile approach to Fe3O4@Au nanoparticles with magnetic recyclable catalytic properties
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