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> Materials > A greener wayto createinterwoven polymers

of isotactic macromolecules ( IUPAC definition).[4(passive) are composedIsotactic polymers

of isotactic macromolecules ( IUPAC definition).[5(passive) are composedIsotactic polymers

to improve the efficiency of your process water , raw water , wastewater , and potable water treatment systems(passive) are designedTramfloc polymers

Scott Phillips A Chemist At Boise State UniversityHas DesignedSelfimmolative Polymers

Nature Communications Tong and colleaguescreatedstereoblock polymers

widely usedto createdegradability in polymers

Copolymerization with α - olefinscan resultin elastomeric polymers

These agents are commonly usedto createfoamed polymers

Nature Communications Process biodegradable polyesters polymerisation process Tong and colleaguescreatedstereoblock polymers

of monomers that interact non - covalently.[5(passive) are composedSupramolecular polymers

of monomers that interact non - covalently.[33(passive) are composedSupramolecular polymers

of monomers that interact non - covalently.[26(passive) are composedSupramolecular polymers

Preferably acids or acids derivatives are usedresultingin esterified polymers

In order to obtainthe transparency of the optical film , it is preferableto setpurities of the polymers

In order to obtain the transparency of the optical film , it is preferableto setpurities of the polymers

for industrial , automotive , and electrical applications , among others , where stability and durability are required(passive) are designedThermoset polymers

hardening a mixture of epoxy and fiber optics , or aramid , which is typically used for bulletproof vests(passive) created byfiberreinforced polymers

to avoid triggering unwanted immune responses , specifically fibrotic responses , which the body uses to isolate foreign bodies(passive) are designedafibrotic polymers

forth(passive) are setThermosetting polymers

phase separation of the material 's components(passive) are often caused byDiscolourations on polymers

of hydrophilic and hydrophobic polymer links(passive) are composedAmphiphilic polymers

on Titan , crucial in the formation of life(passive) were also discoveredPolymine polymers

to withstand highly salty ( ionic ) conditions better than many acrylate homo - polymer Super Absorbents(passive) are designedSuperabsorbent Polymers

Enabling Chemistriesto CreateNanostructured Polymers

A third approach ... ceric ammonium nitrate - treated polyvinyl pyrrolidone ( PVPresultsin triblock polymers

the low - temperature impact strength of moldingsoriginatedfrom a - olef in polymers

of cross - linked molecules that have a high sodium content attracting water into the polymer system through a process called osmosis(passive) are composedSuperabsorbent polymers

Miriam Unterlass discussesCreatingGeomimetic Polymers

aqueous channels created by PEG chains and anticipated to further increase the initial burst release [ 48(passive) is caused byPEGylated polymers

The host – guest complexation between 18 and 19aresultedin supramolecular polymers

of a 3dimensional network of covalently - bonded molecular chains which are joined at numerous locations along the length of these chains by " cross - links " of primary covalent bonds(passive) are composedThermosetting polymers

by adding all the components to a reaction flask and heating under nitrogen to a temperature of approximately 135 degrees(passive) was createdacrylated polymers

a non - uniform temperature of the cake during curing of the thermoset polymer(passive) is caused bythermoset polymers

The use of polyphenolics ( compounds having more than two phenolic groups per moleculeresultedin thermoset polymers

a Japanese research teamdiscoveredquasicrystals in polymers

to increase tear film stability(passive) can be designedAmphipathic polymers

Combination of Halogen-(passive) Created bySupramolecular Polymers

an additiveto preventpolymers from photooxidation

by inducing directional stress / strain in a film(passive) can be createdBirefringence in polymers

to disrupt lipid membranes US4966953designedto disrupt lipid membranes US4966953

to Disrupt Lipid Membranes " , BiochemDesignedto Disrupt Lipid Membranes " , Biochem

to disrupt lipid membranes US5399616designedto disrupt lipid membranes US5399616

to disrupt lipid membranesWO2005003088A2 * Jun 18designedto disrupt lipid membranesWO2005003088A2 * Jun 18

to Disrupt Lipid Membranes " , 1989 , BiochemDesignedto Disrupt Lipid Membranes " , 1989 , Biochem

to disrupt lipid membranes US4944948A ( endesignedto disrupt lipid membranes US4944948A ( en

to disrupt lipid membranes US5318719A ( endesignedto disrupt lipid membranes US5318719A ( en

to disrupt lipid membranes US 5179190designedto disrupt lipid membranes US 5179190

to disrupt lipid membranes EP2499200A1 ( endesignedto disrupt lipid membranes EP2499200A1 ( en

to disrupt lipid membranesUS4944948Feb 24 , 1989Jul 31 , 1990Liposome Technology , Incdesignedto disrupt lipid membranesUS4944948Feb 24 , 1989Jul 31 , 1990Liposome Technology , Inc

of all - vinyl polymer blockscomposedof all - vinyl polymer blocks

to disrupt lipid membranesUS4950475designedto disrupt lipid membranesUS4950475

to disrupt lipid membranesCA642423Adesignedto disrupt lipid membranesCA642423A

to disrupt lipid membranesUS5318719designedto disrupt lipid membranesUS5318719

to disrupt lipid membranesUS5445655designedto disrupt lipid membranesUS5445655

to disrupt lipid membranesUS496359522designedto disrupt lipid membranesUS496359522

to disrupt lipid membranesUS5326567designedto disrupt lipid membranesUS5326567

to disrupt lipid membranesUS4944948designedto disrupt lipid membranesUS4944948

to disrupt lipid membranesUS5393620designedto disrupt lipid membranesUS5393620

a New Generation of Building Blocks ... 1996Discovera New Generation of Building Blocks ... 1996

to disrupt lipid membranesUS 4943624designedto disrupt lipid membranesUS 4943624

from soybean plants ( a renewable resource ) for superior strength and dimensional stabilitycreatedfrom soybean plants ( a renewable resource ) for superior strength and dimensional stability

to release drugs over a defined period of timedesignedto release drugs over a defined period of time

of Noncovalent Supermacrocycles in SolutionComposedof Noncovalent Supermacrocycles in Solution

from renewable soybean plantscreatedfrom renewable soybean plants

to disrupt lipid membranes EP0422543A1 ( en ) 1989 - 10 - 09 1991 - 04 - 17designedto disrupt lipid membranes EP0422543A1 ( en ) 1989 - 10 - 09 1991 - 04 - 17

from the poly - association of molecules through non - covalent interactionsresultsfrom the poly - association of molecules through non - covalent interactions

to improve rheology control of water - based drilling fluids , which offer a cost - effective solution for mud viscosificationdesignedto improve rheology control of water - based drilling fluids , which offer a cost - effective solution for mud viscosification

to disrupt lipid membranesCA1058525A1 * Aug 4 , 1975Jul 17 , 1979Eli PerryMembrane separation of phenols from aqueous streamsEP0245857A1designedto disrupt lipid membranesCA1058525A1 * Aug 4 , 1975Jul 17 , 1979Eli PerryMembrane separation of phenols from aqueous streamsEP0245857A1

to disrupt lipid membranesCA1058525A1 * Aug 4 , 1975Jul 17 , 1979Eli PerryMembrane separation of phenols from aqueous streamsEP0296098A2designedto disrupt lipid membranesCA1058525A1 * Aug 4 , 1975Jul 17 , 1979Eli PerryMembrane separation of phenols from aqueous streamsEP0296098A2

a sturdy end product like 3d printingto createa sturdy end product like 3d printing

to disrupt lipid membranesUS4963595Dec 22 , 1988Oct 16designedto disrupt lipid membranesUS4963595Dec 22 , 1988Oct 16

chronic inflammation , which might be a potential driver of intimal formation , diminishing over a long term with decreased efficacy of these systemsmight provokechronic inflammation , which might be a potential driver of intimal formation , diminishing over a long term with decreased efficacy of these systems

of mono- and bivalent ureidopyrimidinone - based monomerscomposedof mono- and bivalent ureidopyrimidinone - based monomers

to disrupt lipid membranesUS5185401 * Apr 2 , 1992Feb 9designedto disrupt lipid membranesUS5185401 * Apr 2 , 1992Feb 9

durable , strong bonds and they offer enhanced capabilities in extreme environmentscreatedurable , strong bonds and they offer enhanced capabilities in extreme environments

to disrupt lipid membranesAdvanced Patent SearchPublication numberUS4943624 APublication typeGrantApplication numberUSdesignedto disrupt lipid membranesAdvanced Patent SearchPublication numberUS4943624 APublication typeGrantApplication numberUS

for Plasma / Energetic Beam Templating of Materials , 0506988 , PIs : G. S. Oehrlein , R. J Phaneuf , D. B Graves , and C. G. Willson , A. Alizadeh ; University of Maryland , University of California Berkeley , University of Texas Austin , GE Global Research Center ( 48 ) Science and Technology of Nanoporous Metal Films , 0507023 , PIsDesignedfor Plasma / Energetic Beam Templating of Materials , 0506988 , PIs : G. S. Oehrlein , R. J Phaneuf , D. B Graves , and C. G. Willson , A. Alizadeh ; University of Maryland , University of California Berkeley , University of Texas Austin , GE Global Research Center ( 48 ) Science and Technology of Nanoporous Metal Films , 0507023 , PIs

from Soybean plants and Celceram ™ a recycled product of coal combustioncreatedfrom Soybean plants and Celceram ™ a recycled product of coal combustion

to disrupt lipid membranesAdvanced Patent SearchTry the new Google Patents , with machine - classified Google Scholar resultsdesignedto disrupt lipid membranesAdvanced Patent SearchTry the new Google Patents , with machine - classified Google Scholar results

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