By Ashutosh Tiwari, Lokman Uzun
"Molecularly imprinted polymers (MIPs) are a massive sensible fabric due to their capability implications in varied learn fields. The fabrics were constructed for quite a number makes use of together with separation, environmental, biomedical and sensor purposes. during this ebook, the chapters are clustered into major sections: concepts to be hired whilst utilizing the affinity fabrics, and rational layout of MIPs for complex functions. within the first half, the booklet covers the hot advances in generating MIPs for pattern layout, education and characterizations. within the moment half, the chapters reveal the significance and novelty of construction of popularity printed on the fabrics and surfaces for various microbial detection sensors within the biomedical, environmental and foodstuff defense fields in addition to sensing human smell and virus tracking platforms. half 1: techniques of affinity fabrics Molecularly imprinted polymers MIP nanomaterials Micro- and nanotraps for sturdy section extraction Carbonaceous affinity nanomaterials Fluorescent MIPs MIP-based fiber optic sensors half 2: Rational layout of MIP for complicated functions MIP-based biomedical and environmental sensors Affinity adsorbents for environmental biotechnology MIP in nutrients security MIP-based virus tracking MIP-based drug supply and regulated liberate Biorecognition imprints at the biosensor surfaces MIP-based sensing of unstable natural compounds in human physique odour MIP-based microcantilever sensor system"--Provided by means of publisher. Read more...
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Additional resources for Advanced molecularly imprinting materials
Org. , 55, 3381, 1990. , A new method for the introduction of recognition site functionality into polymers prepared by molecular imprinting – synthesis and characterization of polymeric receptors for cholesterol, J. Am. Chem. , 117, 7105, 1995. , Application of molecularly imprinted polymers to solid-phase extraction of compounds from environmental and biological samples, TrAC-Trends Anal. , 25, 143, 2006. , Affinity separations on molecularly imprinted polymers with special emphasis on solid-phase extraction, J.
This problem can be circumvented by immersing the obtained fibers again in fresh polymerization solutions, being fibers repeatedly coated by identical polymerization procedures until the desired thickness is reached. 5b) . The preparation of MIP-coated silica fibers has been further improved by surface reversible addition–fragmentation chain transfer polymerization (RAFT), which permits a better control of the thickness of MIP coating . Briefly, silylated silica fibers were further functionalized with phenyl magnesium bromide (a RAFT agent) in the presence of carbon disulfide.
Chromatogr. A, 1357, 158, 2014. 78. , J. Chromatogr. A, 1432, 1, 2016. 2 A Genuine Combination of Solvent-free Sample Preparation Technique and Molecularly Imprinted Nanomaterials Santanu Patra1, Ekta Roy1, Rashmi Madhuri1* and Prashant K. Sharma2 Department of Applied Chemistry, Indian School of Mines, Dhanbad, Jharkhand, India 2 Functional Nanomaterials Research Laboratory, Department of Applied Physics, Indian School of Mines, Dhanbad, Jharkhand, India 1 Abstract Even though we have reached the 21st century, the sample preparation prior to the trace-level analysis or specific separation is still considered the bottleneck of the whole analytical process.