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Polymers molecular imprinted

Takeuchi T, Mukawa T, Shinmori H (2005) Signaling molecularly imprinted polymers Molecular recognition-based sensing materials. Chem Rec 5 263... [Pg.490]

Molecularly Imprinted Polymers Molecular imprinting technique was recently used to prepare highly selective tailor-made synthetic affinity media used mainly in chromatographic resolution of racemates or artificial antibodies [158-161]. A complex between the template molecule and the functional monomer is first formed in solution by covalent or noncovalent interactions (Figure 6.12). [Pg.116]

C. Alvarez-Lorenzo and A. Concheiro, Handbook of Molecularly Imprinted Polymers, Molecular Imprinting A Historical Perspective, C. Alvcuez-Lorenzo and A. Concheiro, eds., Smithers Rapra Publishing, 1 1-22,2013. [Pg.301]

SENSORS BASED ON FREE-STANDING MOLECULARLY IMPRINTED POLYMER MEMBRANES. COMPUTATIONAL MODELLING OF SYNTHETIC MIMICKS OF BIORECEPTORS... [Pg.309]

The development of highly selective chemical sensors for complex matrixes of medical, environmental, and industrial interest has been the object of greate research efforts in the last years. Recently, the use of artificial materials - molecularly imprinted polymers (MIPs) - with high recognition properties has been proposed for designing biomimetic sensors, but only a few sensor applications of MIPs based on electrosynythesized conductive polymers (MIEPs) have been reported [1-3]. [Pg.322]

METAL-LOADED SORBENTS AND MOLECULARLY IMPRINTED POLYMERS IN SPE-LC... [Pg.272]

Recently, molecularly imprinted polymers (MIPs) have gained attention as new, selective sorbents for chromatography and SPE. The cavities in the polymer... [Pg.272]

The sorbents that are most frequently used in environmental analysis are Cig-silica based sorbents, polymeric sorbents (usually styrenedivinilbenzene) and graphitized carbon. In order to increase the selectivity of these sorbents, immunosorbents (35, 36) have been developed and used with good results, while recently, molecularly imprinted polymers have started be to used (35, 36). [Pg.345]

Fig. 5-5. Schematic representation of the preparation procedure of molecular imprinted polymers (MIP). Fig. 5-5. Schematic representation of the preparation procedure of molecular imprinted polymers (MIP).
Molecularly imprinted polymers (MIPs) can be prepared according to a number of approaches that are different in the way the template is linked to the functional monomer and subsequently to the polymeric binding sites (Fig. 6-1). Thus, the template can be linked and subsequently recognized by virtually any combination of cleavable covalent bonds, metal ion co-ordination or noncovalent bonds. The first example of molecular imprinting of organic network polymers introduced by Wulff was based on a covalent attachment strategy i.e. covalent monomer-template, covalent polymer-template [12]. [Pg.153]

Gel materials are utilized in a variety of technological appUcations and are currently investigated for advanced exploitations such as the formulation of intelligent gels and the synthesis of molecularly imprinted polymers. [Pg.180]

Toth E, Hehn L, Merbach AE (2002) Relaxivity of MRI Contrast Agents. 221 61-101 Tovar GEM, Krauter I, Gruber C (2003) Molecularly Imprinted Polymer Nanospheres as Fully Affinity Receptors. 227 125-144... [Pg.239]

Ansell, RJ Mosbach, K, Magnetic Molecularly Imprinted Polymer Beads for Drug Radioligand Binding Assay, Analyst 123, 1611, 1998. [Pg.608]

Piletsky, SA Andersson, HS Nicholls, LA, Combined Hydrophobic and Electrostatic Interaction-Based Recognition in Molecularly Imprinted Polymers, Macromolecules 32, 633, 1999. [Pg.618]

Tan, ZJ Remcho, VT, Molecular Imprint Polymers as Highly Selective Stationary Phases for Open Tubular Liquid Chromatography and Capillary Elechophoresis, Elechophoresis 19, 2055, 1998. [Pg.622]

Advanced techniques like molecularly imprinted polymers (MIPs), infrared/near infrared spectroscopy (FT-IR/NIR), high resolution mass spectrometry, nuclear magnetic resonance (NMR), Raman spectroscopy, and biosensors will increasingly be applied for controlling food quality and safety. [Pg.314]

Zougagh, M., Valcarcel, M., and Rios, A., Automatic selective determination of caffeine in coffee and tea samples by using a supported liquid membrane-modified piezoelectric flow sensor with molecularly imprinted polymer. Trends Anal. Chem., 23, 399, 2004. [Pg.323]

Yano, K. and Karube, I., Molecularly imprinted polymers for biosensor applications. Trends Anal. Chem., 18, 199, 1999. [Pg.528]

The most widely employed techniques for the extraction of water samples for triazine compounds include liquid-liquid extraction (LLE), solid-phase extraction (SPE), and liquid-solid extraction (LSE). Although most reports involving SPE are off-line procedures, there is increasing interest and subsequently increasing numbers of reports regarding on-line SPE, the goal of which is to improve overall productivity and safety. To a lesser extent, solid-phase microextraction (SPME), supercritical fluid extraction (SEE), semi-permeable membrane device (SPMD), and molecularly imprinted polymer (MIP) techniques have been reported. [Pg.416]

Molecular modelling of opioid receptor-ligand complexes, 40 (2002) 107 Molecularly imprinted polymers,... [Pg.389]


See other pages where Polymers molecular imprinted is mentioned: [Pg.224]    [Pg.224]    [Pg.207]    [Pg.18]    [Pg.309]    [Pg.284]    [Pg.4]    [Pg.14]    [Pg.39]    [Pg.134]    [Pg.134]    [Pg.160]    [Pg.427]    [Pg.444]    [Pg.709]    [Pg.733]    [Pg.748]    [Pg.826]    [Pg.7]    [Pg.19]   
See also in sourсe #XX -- [ Pg.134 ]

See also in sourсe #XX -- [ Pg.134 ]




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Applications of Molecularly Imprinted Polymers

Catalysis With Molecularly Imprinted Polymers

Characterization of Molecularly Imprinted Polymers

Chemical agent sensors molecularly imprinted polymers

Chemical detection molecularly imprinted polymer

Chromatography Using Molecularly Imprinted Polymers

Combinatorial molecularly imprinted polymers

Enzyme mimics molecularly imprinted polymers

Extraction molecularly imprinted polymer

Extraction techniques molecularly imprinted polymer

Formats of Molecularly Imprinted Polymers

Imprinted polymers

Ligand binding assay molecularly imprinted polymers

MISPE (molecularly imprinted polymer

Molecular Imprinted Nano-Polymer

Molecular Imprinted Polymers for Chiral Separations

Molecular imprinted polymers (MIPs

Molecular imprinted polymers applications

Molecular imprinted polymers preparation

Molecular imprinted polymers stationary phases, preparation

Molecular imprinting in organic polymers

Molecular imprinting nanomaterial polymer

Molecular imprinting polymers semiconductor

Molecularly Imprinted Polymers - Preparation, Biomedical

Molecularly imprinted photonic polymer

Molecularly imprinted polymer Molecular similarity

Molecularly imprinted polymer beads

Molecularly imprinted polymer beads particles

Molecularly imprinted polymer beads polymerisation

Molecularly imprinted polymer imprinting

Molecularly imprinted polymer imprinting

Molecularly imprinted polymer sensors

Molecularly imprinted polymer solid-phase

Molecularly imprinted polymer solid-phase extraction

Molecularly imprinted polymer techniques

Molecularly imprinted polymers

Molecularly imprinted polymers

Molecularly imprinted polymers -based

Molecularly imprinted polymers MIPs)

Molecularly imprinted polymers analysis methods

Molecularly imprinted polymers applications

Molecularly imprinted polymers binding capacity

Molecularly imprinted polymers binding site heterogeneity

Molecularly imprinted polymers characterics

Molecularly imprinted polymers characterisation

Molecularly imprinted polymers characteristics

Molecularly imprinted polymers computational design

Molecularly imprinted polymers covalent

Molecularly imprinted polymers cross-reactivity

Molecularly imprinted polymers enantiomeric resolution

Molecularly imprinted polymers enantiomers

Molecularly imprinted polymers factors influencing

Molecularly imprinted polymers first reported

Molecularly imprinted polymers in solid phase extraction

Molecularly imprinted polymers molecular dynamics

Molecularly imprinted polymers molecular modelling

Molecularly imprinted polymers monomer template ratio

Molecularly imprinted polymers monomer-template rigidity

Molecularly imprinted polymers monomer-template solution structures

Molecularly imprinted polymers nanoparticles

Molecularly imprinted polymers polymerization

Molecularly imprinted polymers preparation

Molecularly imprinted polymers print molecule

Molecularly imprinted polymers recognition properties

Molecularly imprinted polymers selectivity

Molecularly imprinted polymers template shape

Molecularly imprinted polymers thermodynamic considerations

Molecularly imprinted polymers three-dimensional imprinting

Monolithic molecularly imprinted polymers, preparation

Organic polymers molecular imprinting

Polymer brushes molecularly imprinted

Polymer combinatorial libraries molecularly imprinted

Polymer molecular imprinted polymers

Polymer molecular imprinted polymers

Polymers molecular imprinting

Polymers molecular imprinting

Sample preparation molecularly imprinted polymer

Screening molecularly imprinted polymers

Separation techniques molecularly imprinted polymer

Separations molecularly imprinted polymer

Solid molecular imprinted polymers

Synthesis molecularly imprinted polymers

Synthetic antibodies, molecularly imprinted polymers

Templates, imprinting Molecularly imprinted polymer

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