Development of Molecularly Imprinted Polymers
A special issue of Molecules (ISSN 1420-3049). This special issue belongs to the section "Materials Chemistry".
Deadline for manuscript submissions: closed (15 June 2021) | Viewed by 538
Special Issue Editors
Interests: supercritical fluid technology; synthesis and processing of polymers; green chemistry; molecularly imprinted polymers
Special Issues, Collections and Topics in MDPI journals
Interests: molecularly imprinted polymers; functional polymers; green technologies; green chemistry; affinity-driven purification; drug delivery; (bio) sensor
Special Issue Information
Dear Colleagues,
Molecular imprinting is a powerful technology to create artificial receptors within polymer networks, mimicking natural antibodies. Molecularly imprinted polymers (MIPs) take advantage of molecular recognition ability for a specific template, the molecule for which the affinity is wanted, since the three-dimensional sites produced within the polymer are complementary to the template in terms of functionality, size, and conformation. Their ability to replace expensive and complex affinity materials has high potential in a wide range of areas, and very interesting materials have appeared in recent years.
Despite the relevant literature and the intensive and challenging research activity in the field, there is still a lack of industrial applications of MIPs. Therefore, this Special Issue addresses all aspects of MIP development, for all kind of applications, including MIP optimization, modeling, progresses in analytical chemistry, new and optimized production methodologies and technologies for improved specificity and selectivity, scale-up strategies, fundamental mechanistic studies, (bio)sensors, nanotechnology, catalysis, MIP development for bio-recognition, MIP challenges still to overcome, recent advances in the field, industrial perspectives, etc.
All works related to molecular imprinting are welcome, either papers or reviews, from the more fundamental work to final MIP utilization.
We are willing to receive your contributions!
Dr. Teresa Casimiro
Dr. Raquel Viveiros
Guest Editors
Manuscript Submission Information
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Keywords
- Molecular recognition
- Molecular imprinting
- Artificial receptors
- Affinity polymers
- Polymer synthesis and processing
- Responsive materials
- Drug delivery
- Affinity separation
- Sensors
- Catalysis
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