A method for preparing water-soluble magnetic nanoparticles
A magnetic nanoparticle and water-soluble technology, which is applied in the field of nanomaterials and nanoparticle surface chemical modification, can solve problems such as cumbersome methods, increased difficulty in biological applications, and complex particle surface structures, so as to achieve good dispersion, avoid complex surface structures, The effect of simple method
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Embodiment 1
[0026] Example 1 Method for preparing water-soluble magnetic nanoparticles
[0027] This embodiment is the method for preparing water-soluble magnetic nanoparticles provided by the present invention, which includes the following steps:
[0028] Step 1: Add 200 μL of polyethylene glycol diacid (purchased from Sigma-Aldrich, molecular weight 600). Dissolve in 10 mL of chloroform and 5 mL of N,N-dimethylformamide mixed solution, and stir for 30 minutes to obtain a mixed solution.
[0029] Step 2: Synthesis of oil-soluble Fe with good dispersion and high quality 3 o 4 Nanoparticles: Fe(acac) 3 As a precursor, Fe was prepared by high temperature oil phase pyrolysis 3 o 4 Nanoparticles (references: Sun S.H., Zeng H., Rob in son D.B., et al..J.Am.Chem.Soc.[J],2004,126(1):273-279), in argon Under protection, 0.17604g Fe(acac) 3 Dissolve 215825g of 1,2-hexadecanediol in 20mL of benzyl ether, add 119mL of oleic acid and 2mL of oleylamine, stir and heat to 200°C, keep the temper...
Embodiment 2
[0031] Example 2 Structural Characterization of Water-Soluble Magnetic Nanoparticles
[0032] This example is the structural characterization of the water-soluble magnetic nanoparticles prepared according to the method of Example 1.
[0033] Fe before ligand displacement 3 o 4 The transmission electron microscope image of the nanoparticles is shown in Figure 1a As shown, after ligand replacement, Fe 3 o 4 The transmission electron microscope image of the nanoparticles is shown in Figure 1b shown. in, Figure 1a oil soluble Fe 3 o 4 The nanoparticles were dissolved in n-hexane (i.e. the particles obtained in the second step of Example 1) with a concentration of 1.6mg / ml, Figure 1b water soluble Fe 3 o 4 The nanoparticles were dissolved in water, also at a concentration of 1.6 mg / ml.
[0034] Instrument name: 200KV lanthanum hexaboride transmission electron microscope, instrument model: Tecnai G220S-TWIN, manufacturer: American FEI company, voltage: 200KV.
[003...
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