Porous polymers : design, synthesis and applications /

Porous materials with ultrahigh surface area are of great interest for potential applications in energy storage and environmental remediation. Porous Polymers describes the significant recent progress in the development of different porous frameworks, with a particular focus on the relationship betw...

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Bibliographic Details
Main Authors: Qiu, Shilun (Author), Teng, Ben (Author)
Format: eBook
Language:English
Language Notes:English.
Published: Cambridge, UK : Royal Society of Chemistry, [2016]
Series:Monographs in supramolecular chemistry ; no. 17.
Subjects:
Online Access:Connect to the full text of this electronic book
Description
Summary:Porous materials with ultrahigh surface area are of great interest for potential applications in energy storage and environmental remediation. Porous Polymers describes the significant recent progress in the development of different porous frameworks, with a particular focus on the relationship between structure design, synthesis method and properties. The book starts with an introduction to porous materials and their functions followed by chapters looking at the design of porous polymers, synthesis methods of porous polymers (reversible methods, irreversible methods, copolymerization methods and self-polymerization methods); characterisation of porous polymer structures and post-synthesis techniques of porous polymers (lithiation, sulphonation, carbonization, grafting). Specific chapters then detail different porous materials systems such as conjugated microporous polymers (CMPs); covalent organic frameworks (COFs); hyper-crosslinked polymers (HCPs); polymers of intrinsic microporosity (PIMs); and porous aromatic frameworks (PAFs). Written by active researchers in the field, the book provides a comprehensive overview of different porous polymer systems for researchers and graduate students in chemistry and materials science working on novel materials and those interested in the energy and environmental applications.
Physical Description:1 online resource (xi, 311 pages .)
Bibliography:Includes bibliographical references and index.
ISBN:1523101954
1782622268
9781523101955
9781782622260
DOI:10.1039/9781782622260