{"product_id":"fullerenes-c78","title":"fullerenes C78","description":"\u003cp\u003eProduct Name Name:fullerenes C78 Product Overview C78 is a member of the Fullerene family, consisting of 78 carbon atoms linked by covalent bonds to form a closed, hollow cage. Fullerenes are a class of allotrope of carbon with a special geometry and electronic structure, and since the discovery of C60 in 1985, scientists have synthesized a variety of fullerene molecules of different sizes, including C78. C78 has some solubility in some organic solvents. A convex polyhedron with a unique cage structure, consisting of pentagonal and hexagonal faces. Some fullerenes C78 molecules have D2 symmetry and are therefore inherently chiral. Molecular weight: 936.83; Boiling point: -164.0 ± 7.0 °C (760 mmHg); Melting point: \u0026gt;350 °C; Flash point: -228.3 ± 11.7 °C. In the study, the scientists worked to explore various properties and potential applications of fullerene C78 and its derivatives. For example, the study of its micro-nano structure and properties is helpful to understand its application prospects in photoelectric detection and so on. However, due to its relatively low yield and difficulties in separation, there are relatively few studies on fullerene C78, and most of them are still in the scientific research stage. Technical Parameter Purity:\u0026gt;98.0wt% Product Features Stability: The C78 molecule is relatively stable at room temperature and pressure, but its stability can be affected by molecular structure, isomer type, and environmental conditions (such as temperature, pressure, light, etc.). Electrical conductivity: As an allotrope of carbon, C78 may have some electrical conductivity, but its electrical conductivity may vary depending on the isomer type and purity. Optical properties: C78 molecules may exhibit unique optical properties when exposed to light, such as absorbing, emitting, or scattering specific wavelengths of light. Reactivity: The carbon atoms on the surface of the C78 molecule may be somewhat reactive, able to chemically react with other molecules or ions. This reactivity makes C78 potentially useful in catalysis, adsorption and other fields. Oxidation resistance: The carbon atoms in the C78 molecule are closely linked by covalent bonds to form a stable cage structure, which gives the C78 molecule a certain antioxidant ability. Application Fields Scientific research use: Mainly used in the field of scientific research, its unique molecular structure and properties provide scientists with a valuable opportunity to study new materials and new properties. Potential applications: With the deepening of research, people gradually found that it has potential application value in catalysis, adsorption, electronic devices, biomedicine and other fields. For example, the larger cage-like structure may provide a larger internal space, allowing it to hold more molecules or ions, thus showing unique application potential in catalysis, adsorption and other fields. Related Information Please e-mail for the detailed characterization data. E-mail:sales@xfnano.com\u003c\/p\u003e","brand":"xfnano","offers":[{"title":"10 mg Purity:\u003e98.0wt% 100575 \/ Store at 4°C refrigerated \/ 365days","offer_id":57280479134074,"sku":"100575","price":1421.88,"currency_code":"USD","in_stock":true}],"thumbnail_url":"\/\/cdn.shopify.com\/s\/files\/1\/0907\/3606\/6938\/files\/1_27871cef-ce01-415a-9a0e-d29d5e516d17.png?v=1780024497","url":"https:\/\/chinanano.com\/products\/fullerenes-c78","provider":"xfnano","version":"1.0","type":"link"}