Method for mediating proteins to synthesize and modify cerium nano material
A nanomaterial and protein technology, applied in nanotechnology, metal processing equipment, transportation and packaging, etc., can solve problems such as synthetically modified cerium nanoparticles and cerium nanochains, and achieve a major role in promoting, application prospects, and simple regulation , highly reproducible effect
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Embodiment 1
[0033] Example 1 Preparation of cerium nanoclusters
[0034] Take 0.25g BSA and add it into 9mL distilled aqueous solution, take 500uL 0.1mol / L Ce(NO 3 ) 3 .6H 2 Add 0 L to it, and under 600r / min magnetic stirring, react at room temperature (37°C) for 15 minutes, and then the system becomes a little turbid. Take 500uL 1mol / L KOH and add it to the above system to adjust the pH to about 13, and react at room temperature (37°C) for 15 minutes. The reaction was stopped, and the above reaction solution was placed in a dialysis bag with a molecular weight cut off of 10,000 and dialyzed with twice distilled water for 24 hours, wherein the water was changed every 6 hours, and the water change volume was 3 L / time. To remove unreacted cerium salt, hydroxide (OH - ) and other inorganic ions. Finally, place in a 100kd (15mL) sleeve centrifuge tube and centrifuge at 4500r / min for 5 times, remove excess unreacted BSA, and obtain ceria nanoclusters (ceria nanoclusters, 8mL, C Ce =0.55mg...
Embodiment 2
[0035] Example 2 Preparation of cerium nanoparticles
[0036] Take 0.25g BSA and add it to 9mL distilled aqueous solution, place it in an oil bath at 80°C for 10min, and then add 500uL 0.1mol / L Ce(NO 3 ) 3 .6H 2 O solution, the system was immediately turbid, and 500uL 1mol / L KOH was added to the above system at one time to adjust the pH to about 13. After 5 minutes of reaction in an oil bath at 80°C, the system was clear (light yellow), and the reaction was stopped after continuing to control the temperature for 2 hours. Cool to After 25°C, place the above reaction solution in a dialysis bag with a molecular weight cut-off of 10,000 for dialysis for 24 hours, and change the water every 6 hours at a rate of 3 L / time. To remove unreacted cerium salt, hydroxide (OH - ) and other inorganic ions. Finally placed in a 100kd (15mL) sleeve centrifuge tube, 4500r / min centrifugal washing 5 times, remove excess unreacted BSA, to obtain ceria nanoparticles (ceria nanoparticles, 8mL, C ...
Embodiment 3
[0037] Example 3 Preparation of cerium nanochains (short chain ~ 70nm, DLS)
[0038] Take 0.25g BSA and add it into 9mL distilled aqueous solution, take 500uL 0.1mol / L Ce(NO 3 ) 3 .6H 2 Add 0 L to it, under 600r / min magnetic stirring, react at room temperature (37°C) for 15 minutes, and then the system is slightly cloudy. Take 500uL 1mol / L KOH and add it to the above system to adjust the pH to about 13. After reacting at room temperature (37°C) for 4 hours The reaction was stopped, and the above reaction solution was placed in a dialysis bag with a molecular weight cut-off of 10,000 and dialyzed with twice distilled water for 24 hours, wherein the water was changed every 6 hours, and the water change volume was 3 L / time. To remove unreacted cerium salt, hydroxide (OH - ) and other inorganic ions. Finally placed in a 100kd (15mL) sleeve centrifuge tube, 4500r / min centrifuged and washed 5 times to remove excess unreacted BSA, to obtain ceria nanochains (ceria nanochains, 8mL...
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