Large-Size Graphene Oxide
Product Detail
While there’s no question that graphene has a wide range of positive attributes, one of its downfalls is its generally small flake size. Since graphene usually comes in miniscule flakes, its electrical conductivity and mechanical properties are somewhat hindered, which can be a major problem for businesses that heavily depend on their electrical equipment. Luckily, ACS Material can provide you with large-size graphene oxide that retains commercially viable properties that are well suited for a number of industry applications. Whether you’re creating nonlinear optical materials for ultrafast optoelectronics or hoping to develop a large-scale production of graphene, large-size graphene oxide makes for a great semiconductor or insulator.
CAS-No.: 7782-42-5
1. Preparation Method
Hummers Method
2. Characterizations
Grade: |
Industrial |
Appearance: |
Brownish grey powder |
Monolayer Diameter: |
10-40 μm |
pH (1mg/mL): |
~2.88 |
Monolayer Rate: |
>95% |
BET: |
~207 m2/g |
Carbon Content: |
~42 wt.% |
Oxygen Content: |
~54 wt.% |
Sulfur Content: |
<1.5 wt.% |
Ash Content: |
<1.0 wt.% |
BET: |
~207 m2/g |
Grain Size: |
<80 mesh |
Typical SEM Image of ACS Material Large-Size Graphene Oxide
Typical TEM Image of ACS Material Large-Size Graphene Oxide
- Attention: Using an ultrasonic dispersion equipment to peel ACS Material Large-Size Graphene Oxide, will to some extent, lead to a corresponding reduction in the diameter size. Therefore, it is recommended to use a relatively gentle stripping treatment such as mechanical stirring.
3. Application Fields
Graphene and polymers manufacture, water purification, flexible rechargeable battery electrode, optically transparent films, papers, sensors, nanocarriers for metal catalysis, anti-electrostatic additives, adsorption material and biomedicine etc.
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Research Citations of ACS Material Products
- Berning, T.; Bessarabov, D. GOMEA: A Conceptual Design of a Membrane Electrode Assembly for a Proton Exchange Membrane Electrolyzer. Membranes 2023, 13, 614. https://doi.org/10.3390/membranes13070614