Qiyue Province Custom Synthesis of Mesoporous Composite Fe | Mesoporous Fe3O4 / MnO2 Composite

ioeinternet 31/07/2021 2487

Magnetic nanoparticles are combined with menu nanoporous silicon nanoparticles, and the synthesized nanomagnetic composite particles have good magnetic response and biomass, which can be used as a contrast agent and targeting agent, in catalytic, environmental pollutant separation. Magnetic nanoparticles develop rapidly due to their magnetic storage, biomedical applications, biomedical applications are mainly used in pharmaceutical carriers and nuclear magnetic resonances. The mesoporous silicon nanoparticles have a high specific surface area and a hole volume, an adjustable pore structure, a good physical chemical stability and excellent bio-adaptability and degradable capability, and is an ideal pharmaceutical carrier and a surface stabilizer.

氧化铈/氧化铁/介孔硅纳米复合材料

We have: synthetic phospholipin, polymer polyethylene glycol derivative, block copolymer, magnetic nanoparticles, nanotrol and nano-gold rod, near-infrared fluorescent dye, active fluorescent dye, fluorescently labeled glucan BSA and streptavidation, protein crosslinking agent, small molecule PEG derivative, dotting chemical product, dendrimer, cyclodextrous derivative, large ring ligand, fluorescence quantum point, hyaluronic acid derivative, graphene or oxidation Graphene, carbon nanotubes, fullerenes.

Related custom list:

SiO2 @ pi silica-polyimide nanocomposite hollow ball

SiC @ SiO2 @ Fe3O4

C-FE3O4 / G composite

Glashene surface load Fe3O4 microspheres

FE3O4 @ c nanoparticle surface coated metal organic frame compound MIL-100 (Fe)

Nuclear shell structure MOFS-magnetic material hybrid nanoparticles

HS-PS-FE3O4NPS mercapto group polystyrene modified tetraned iron nanoparticles

Polypine - tetraned iron magnetic organic / inorganic hybrid functional material (PPY @ Fe3O4)

Polyaniline-FE3O4 Organic / Inorganic Hybrid Functional Material ((PANI @ Fe3O4)

Polythiophene - tetraned iron magnetic organic / inorganic hybrid functional material (P3HT @ Fe3O4)

Magnetic nanoparticles modified diombcoma nanofilay FE3O4 / MOS2

Upper conversion and magnetic multi-function composite nanomaterial UCNPS @ Fe3O4

Fe3O4 @ MOS2 nuclear shell structure nanomaterial

PEI-Fe3O4 polyethyleneimine magnetic nanoparticles

Bi25FeO40 / α-Fe2O3 composite nanoparticles

AG / PPY / FE2O3 composite nanoparticles

Fe2O3-PANI nanocomposite

Magnetic nanometer Fe3O4 / SiO2 composite particles

α-Fe2O3 modified PBZRO3 nanoparticles

CDS / α-Fe2O3 composite nanoparticles

Quantum dot carnamen nanoparticles

γ-Fe2O3 / ZNS magnetic-fluorescent nanocomposite particles

Graphite / Fe2O3 nanoparticles complex nanoparticles

FE2O3 surface cover Si02 composite nanoparticles

FE2O3 surface cover coo-complex nanoparticles

Fe2O3 modified CO2O3 nanocomposites

Fe2O3-SiO2 complex nanoparticles

TiO / Feo complex nanoparticles

TiO / Feo / SiO complex nanoparticles

Ole acid modified Fe2O3 nanocomposite particles

Nano-FE2O3 / terminal hydroxy polybutadiene (HTPB) composite particles

Polyacrylonitrile (PAN) / iron oxide (FE2O3) nanoparticle composite nanofibers

γ-Fe2O3 @ au nuclear - shell structure nanoparticles

Fe2O3 / Al nanocomposite

Zno-Fe2O3 nanoparticles

Fe2O3-PMMA composite nanomaterial

FE2O3 / RGO nanocomposite

Nano-FE2O3 particle modified ultra-high molecular weight polyethylene (UHMWPE)

γ-Fe2O3 nanoparticle @ multi-layer graphene composite material

Neplymia α-Fe2O3 coated titanium dioxide composite particles

Gallene / Fe2O3 composite nanoparticles

Nitrogen doped graphene / Fe2O3 composite material

G-C3 N43 Di-hebeye-modified Fe2O3 composite nanoparticles

SNO2 / α-Fe2O3 nanocomposite

Magnesium-aluminum spinel load complex nano Ru-Fe2O3

Ag / Fe2O3 magnetic nuclear shell nanoparticles

Nano-FE2O3 / oalgoxylammonium AP / HTPB composite particles

Hydroxylated carbon nanotube / iron oxide composite particles

CNTS @ COOH @ Fe2O3

Nano FE2O3 / Gallenne (RGO-Fe2O3NPS) composite

MnO2-fe2O3 composite nanoparticles

The above content is from Qi Yue Xiaobian ZZJ 2021.5.13

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