Product Name
Fullerene C60, 99.9%
Certificate of Analysis (COA)
IUPAC Name
(C60-Ih)5,6fullerene
InChI Key
XMWRBQBLMFGWIX-UHFFFAOYSA-N
SMILES
C12=C3C4=C5C6=C1C7=C8C9=C1C%10=C%11C(=C29)C3=C2C3=C4C4=C5C5=C9C6=C7C6=C7C8=C1C1=C8C%10=C%10C%11=C2C2=C3C3=C4C4=C5C5=C%11C%12=C(C6=C95)C7=C1C1=C%12C5=C%11C4=C3C3=C5C(=C81)C%10=C23
Product Introduction
Fullerene C60 (CAS No. 99685-96-8) is a carbon allotrope composed of 60 carbon atoms arranged in a unique spherical cage structure resembling a soccer ball. As one of the most extensively studied fullerene molecules, C60 exhibits distinctive electronic, optical, and chemical properties.
Due to its high electron affinity, conjugated carbon framework, and nanoscale molecular structure, Fullerene C60 is widely used as a functional material in organic electronics, photovoltaic materials, nanotechnology, energy storage research, and advanced materials development.
Fullerene C60 is an important building block for developing carbon-based functional materials, including electron acceptors, molecular devices, and nanostructured materials.
Mechanism / Principle
Unique Carbon Cage Structure and Electronic Properties
Fullerene C60 functions through its highly conjugated carbon cage structure and electron-accepting ability.
Working principle:
- The delocalized π-electron system enables efficient electron transfer.
- The spherical carbon framework provides unique molecular stability.
- The electron-deficient fullerene structure allows interaction with electron donors.
- These properties support applications in electronic and energy-related materials.
Key features:
- Highly conjugated carbon structure
- Strong electron-accepting capability
- Unique molecular geometry
- Excellent nanoscale functional properties
Key Research Applications
1. Organic Photovoltaic Materials
Fullerene C60 is widely used as an electron acceptor material in organic photovoltaic research.
Applications include:
- Organic solar cells
- Bulk heterojunction photovoltaics
- Charge separation studies
- Photovoltaic device optimization
2. Organic Electronics
C60 serves as an important functional material in electronic device research.
Applications include:
- Organic semiconductor materials
- Field-effect transistors
- Electron transport layers
- Molecular electronics
3. Energy Storage Research
Fullerene C60 is investigated for energy-related applications.
Applications include:
- Lithium-ion battery materials
- Supercapacitor research
- Electrode material modification
- Energy storage nanomaterials
4. Nanotechnology and Materials Science
Due to its nanoscale structure, C60 is widely studied in nanomaterial development.
Applications include:
- Nanocomposite preparation
- Carbon-based functional materials
- Surface modification research
- Molecular material design
5. Chemical and Biological Research
Functionalized fullerene derivatives are explored in chemical biology research.
Applications include:
- Fullerene derivative synthesis
- Molecular probe development
- Antioxidant-related studies
- Drug delivery material research
Advantages
- Unique spherical carbon structure
- High electron affinity
- Excellent electron acceptor properties
- Suitable for organic electronic materials
- Supports photovoltaic material development
- Valuable building block for fullerene derivatives
- Widely studied carbon nanomaterial
Storage & Handling
- Store in a cool place.
- Keep container tightly closed in a dry and well-ventilated place.
- Containers which are opened must be carefully resealed and kept upright to prevent leakage.
Research Areas
Researchers working in the following fields may benefit from Fullerene C60:
- Nanotechnology
- Carbon materials
- Organic electronics
- Photovoltaic materials
- Energy storage
- Materials chemistry
- Molecular electronics
- Semiconductor research
Q1: What is Fullerene C60?
A: Fullerene C60 (CAS No. 99685-96-8) is a carbon allotrope consisting of 60 carbon atoms arranged in a closed spherical cage structure.
Q2: What is Fullerene C60 used for?
A: Fullerene C60 is mainly used in:
- Organic solar cells
- Organic semiconductor research
- Nanomaterials
- Energy storage materials
- Fullerene derivative synthesis
Q3: What is the molecular formula of Fullerene C60?
A: The molecular formula is C₆₀, with a molecular weight of 720.64 g/mol.
Q4: Why is Fullerene C60 important in photovoltaic research?
A: Its strong electron-accepting ability makes it useful for facilitating charge separation and electron transport in organic photovoltaic systems.
Q5: Is Fullerene C60 a graphene material?
A: No. Fullerene C60 and graphene are both carbon allotropes but have different structures. C60 has a closed spherical cage structure, while graphene is a two-dimensional carbon sheet.
Q6: Can Fullerene C60 be chemically modified?
A: Yes. C60 can undergo various functionalization reactions to produce fullerene derivatives with tailored properties.
Q7: How should Fullerene C60 be stored?
A: Store in a sealed container under dry conditions and protect from light and moisture.
Q8: What are related carbon nanomaterials?
A: Related materials include:
- Fullerene C70
- Carbon nanotubes
- Graphene
- Graphene oxide
- Carbon nanospheres