Cycloolefin meaning

Cycloolefins are unsaturated cyclic hydrocarbons with at least one double bond in the ring structure.


Cycloolefin definitions

Word backwards nifeloolcyc
Part of speech Noun
Syllabic division cyc-lo-ole-fin
Plural The plural of the word cycloolefin is cycloolefins.
Total letters 11
Vogais (3) o,e,i
Consonants (5) c,y,l,f,n

Cycloolefins are a class of cyclic hydrocarbons that contain one or more carbon-carbon double bonds within a ring structure. These compounds exhibit unique properties that make them valuable in various applications across different industries.

Properties of Cycloolefins

Cycloolefins are known for their high thermal stability, transparency, low birefringence, and resistance to chemicals and moisture. These properties make them ideal for applications where these characteristics are required, such as in the production of high-performance plastics.

Uses of Cycloolefins

Cycloolefins are commonly used in the manufacturing of optical films, packaging materials, electronic components, and automotive parts. Their combination of strength, clarity, and resistance to heat and chemicals make them a popular choice in industries where performance and durability are key.

Benefits of Cycloolefins

The unique properties of cycloolefins allow for the production of materials that can withstand harsh conditions without compromising on quality. Their versatility makes them suitable for a wide range of applications, from consumer products to industrial machinery.

Overall, cycloolefins play a crucial role in various industries due to their exceptional properties and benefits. As technology continues to advance, the demand for these compounds is expected to grow, further solidifying their position as key components in the production of high-performance materials.


Cycloolefin Examples

  1. The researcher studied the synthesis of a new cycloolefin compound.
  2. The cycloolefin polymer showed promising properties for use in microelectronics.
  3. The company developed a novel cycloolefin resin for packaging materials.
  4. The team investigated the potential applications of cycloolefin copolymers in drug delivery systems.
  5. The student presented a poster on the characterization of cycloolefin polymers at the conference.
  6. The chemist analyzed the structure of a cycloolefin derivative using spectroscopic techniques.
  7. The engineer designed a cycloolefin-based membrane for gas separation applications.
  8. The pharmaceutical company explored the use of cycloolefin polymers for implantable devices.
  9. The professor published a review article on the properties of cycloolefin materials.
  10. The manufacturer tested the durability of a cycloolefin-based composite material in extreme conditions.


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  • Updated 21/06/2024 - 04:35:25