Hairy nanoparticles: from synthesis to applications
Material type:
TextPublication details: Wiley, 2024.ISBN: - 9783527835850
- 621.38152 LIN
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IIT Gandhinagar | 621.38152 LIN (Browse shelf(Opens below)) | IEEE-Wiley Semiconductor Ebooks | Link to resource | Available |
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| 621.38152 LHE Metamaterials and wave control | 621.38152 LID GaN transistors for efficient power conversion | 621.38152 LIL Atomic layer processing: semiconductor dry etching technology | 621.38152 LIN Hairy nanoparticles: from synthesis to applications | 621.38152 LIN Oxide thermoelectric materials: from basic principles to applications | 621.38152 LIN Smart protective coatings for corrosion control | 621.38152 LIU Electrical and optoelectronic properties of the nanodevices composed of two dimensional materials |
Hairy Nanoparticles
Authoritative reference summarizing comprehensive knowledge on hairy nanoparticles, their self-assembly, interfacial behavior, and applications in catalysis, biomedicine, lubricant technology, etc.
Hairy Nanoparticles provides a comprehensive understanding of the subject, including hairy nanoparticles synthesis, self-assembly (both experiment and simulation), properties, functionalities, and applications. Rendering polymer hairs on the surface of nanoparticles enables hairy nanoparticles to carry a set of intriguing properties.
Contributed to by experts in the field and edited by two highly qualified authors, Hairy Nanoparticles includes information on:
Hairy nanoparticles via bulk microphase separation of block copolymers and self-assembly of block copolymers in solution
Synthesis of monodisperse nanoparticles via block copolymer unimolecular micelles nanoreactors and application of polymer-capped nanoparticles
Environmentally responsive well-defined binary mixed homopolymer brush-grafted silica particles and thermoresponsive polymer brush-grafted silica particles
Self-assembled morphologies of well-defined binary mixed homopolymer brushes grafted on silica nanoparticles (MBNPs) and computer simulations of the self-assembled morphology of MBNPs
Upper critical solution temperature (UCST)-type thermoresponsive poly(alkyl methacrylate)s in SpectraSyn™ 4 PAO oil.
Providing comprehensive coverage of the subject, Hairy Nanoparticles is an essential introductory resource for scientists and engineers in the fields of chemistry, materials science and engineering, polymer science and engineering, nanobiotechnology, and biomedicine, working in both academia and industry.
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