Examples of 'diblock' in a sentence
Meaning of "diblock"
Diblock refers to a type of polymer consisting of two different block copolymers linked together. It is commonly used in chemistry and material science to describe a specific molecular structure
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- Of or pertaining to two blocks together.
- Having two different blocks per macromolecule.
How to use "diblock" in a sentence
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diblock
Diblock copolymers are most often prepared.
A polymer so terminated is commonly referred to as a diblock copolymer.
These diblock copolymers may be linear or branched.
It has essentially zero percent diblock content.
The diblock copolymer is a linear block copolymer.
In another embodiment the copolymer is a diblock copolymer.
The triblock or diblock contains little or no homopolymer.
General operating procedure for preparing diblock copolymers.
A diblock copolymer may also be optionally included.
This case is called a diblock structure.
The diblock polymers also contain a linking moiety.
Inhibition of drug efflux transport proteins by amphiphilic diblock copolymers.
We introduced a diblock copolymer nanoparticle marker.
Diblock content is lower than that of the control.
It is preferred that a diblock copolymer provided herein is biocompatible.
See also
Diblock polymers are preferably used.
The polyester in the diblock that is used is polylactic acid.
The gel composition optionally may include a diblock copolymer.
The diblock copolymer was recovered as a crumb by precipitating with an alcohol.
Preparation of the diblock copolymer.
The diblock copolymer provides numerous benefits to cosmetic compositions.
Preferably the blend is a mixture of diblock copolymers and triblock copolymers.
Diblock and triblock polymeric surfactants are used in the present invention.
It has no diblock content.
Similar phases and characteristics can be observed in immiscible diblock copolymers.
The diblock or triblock surfactant is the primary surfactant of the emulsification system.
Use according to claims wherein said polymer is a diblock or triblock copolymer.
Diblock copolymers and polynucleotide complexes thereof for delivery into cells.
This process offers the advantage of leaving no measurable residual diblock.
A use of such polymer enables to synthesize diblock copolymers or triblock compolymers.
This process can result in a polymer that has essentially no diblock.
It will be appreciated that the diblock units will not all be identical.
Diblock and triblock polymeric emulsification surfactants are used to provide unique materials.
This example describes determination of compatibilities of a diblock polymer with a refrigerant.
The presence of diblock copolymers can be prevented by utilizing a sequential polymerization process.
The most frequently used are the linear diblock or triblock copolymers.
By coupling living diblock copolymer prepared by anionic polymerization with a coupling agent.
These copolymers are therefore preferably selected from diblock copolymers or triblock copolymers.
The diblock copolymers including one polystyrene block and one elastomer block.
Block copolymers can be of any type including diblock and triblock copolymers.
The diblock copolymer prepared by the process of any one of the preceding claims.
It is not required in coupled polymers that the diblock units all be identical.
The diblock copolymers obtained have controlled molecular masses and molecular mass distributions.
The viscoelastic material may be a diblock or triblock of polystyrene and flexible elastomeric block.
The polystyrene is typically present both as a homopolymer and as a portion of the diblock copolymer.
The resulting product is a living diblock polymer having a terminal anion and a lithium counterion.
This example describes the testing of thermal stability of a diblock polymer of this invention.
The preferred diblock content of the block copolymer depends on the intended adhesive attributes.
Two common types of block copolymer structures are the diblock and triblock forms.
Mixtures of these triblock copolymers and diblock copolymers are especially preferred in the present compositions.