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300 mg of oxide powders were used.
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Stable graphene oxide was prepared by sonicating 60 mg of graphene oxide in 120 ml distilled water for 30 min.
Graphene oxide solution was prepared by mixing 50 mg of graphite oxide in 30 mL of ethanol followed by sonication for a period of 30 min.
Briefly, 1 mg of iron oxide nanoparticles was dispersed in 10 mL toluene.
In a 100-mL Teflon-lined autoclave with 65 mL D.I. water, 193.8 mg of graphite oxide and 2.54 mL of PDDA (35 wt. %) were added.
Dispersed in 200 ml concentrated sulfuric acid at room temperature and sonicated for 30 min were 100 mg of graphene oxide.
For reoxidation, 12 mg of graphite oxide was mixed with nitronium ion solution in a microwave reaction kettle (Xi'an Often Instrument Equipment Co. Ltd).
Firstly, 15 mg of graphite oxide was dispersed in 20 mL of deionized water by ultrasonication to form a stable GO colloid solution, and then mixed with 10 mL of AgNO3 (180 mM) and l-arginine (60 mg/mL) solution.
Firstly, 15 mg of graphite oxide was dispersed in 20 mL of deionized water by ultrasonication to form a stable GO colloid solution and then mixed with 10 mL of solution containing AgNO3 (300 mM) and L-arginine (60 mg/mL).
Adsorption experiments were performed by adding 0.5 mg of graphene oxide (GO) surface as adsorbent into 20 mL of ethidium bromide (EtBr) solutions with known concentrations of 0.5 mg L−1.
The obtained solution was mixed with 50 ml aqueous solution containing 200 mg of graphene oxide (GO) prepared by a modified Hummers method [33] using microwave for 2 min at 600 W for thermal exfoliation.
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