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An easy and effective strategy is developed to produce α-Fe2O3 nanoparticles (NPs) anchored on conducting graphene sheets by a hydrothermal reaction, without any reducing agents.
Experiments were conducted without any reducing agent and with volatiles added as H2O, CO2, and N2 because both carbon and nitrogen can occur in different oxidation states.
The samples were prepared in 1× SDS sample buffer without any reducing agent and loaded onto 10% SDS-PAGE gels.
Ten µl plasma samples were first diluted with 90 µl Phosphate Buffer Saline (PBS GIBCOO, Grand Island, NY), and then mixed 1 1 with 2× SDS-PAGE sample buffer (Invitrogen, Grand Island, NY) without any reducing agent.
Five microliters of each fraction from the anion exchange chromatography containing a protein peak at 280 nm were prepared for zymogram by diluting them in Laemmli sample buffer without any reducing agent.
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It was developed without using any reducing agents and the product exhibited extremely stable properties.
Graphene oxide (GO) was reduced by a rapid, effective and eco-friendly electrochemical method of repetitive cathodic cyclic potential cycling, without using any reducing reagents.
Besides, Au and Cu ions can be adsorbed and reduced to their metallic states over the surface of 3D-RP without adding any reducing agent.
Au nanoparticles were formed within the corona block by subsequent reduction of Au3+ to Au0 without introducing any reducing agent, since the amine group of the corona block acts as both the reducing and stabilizing agent.
Simultaneously with the formation of a three-dimensional network of PBH, the silver ions enter the PBH, reduced to Ag dots and trapped into the hydrogel frame without adding any reducing agent.
To investigate the chemical reactivity of functionalized groups on the surface of HCMS, Au and Ag nanoparticles are successfully loaded onto HCMS by direct reduction of HAuCl4 or AgNO3 without adding any reducing agent.
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