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Titlebook: Developments in Ionic Polymers—2; Alan D. Wilson,Havard J. Prosser Book 1986 Elsevier Applied Science Publishers LTD and Imperial Chemical

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書(shū)目名稱(chēng)Developments in Ionic Polymers—2
編輯Alan D. Wilson,Havard J. Prosser
視頻videohttp://file.papertrans.cn/271/270219/270219.mp4
圖書(shū)封面Titlebook: Developments in Ionic Polymers—2;  Alan D. Wilson,Havard J. Prosser Book 1986 Elsevier Applied Science Publishers LTD and Imperial Chemical
描述Ionic polymers, like elephants, are easier to recognise than to define. Several methods of classification have been attempted but none is wholly satisfactory because of the extreme diversity of ionic polymers, which range from the organic, water-soluble polyelectrolytes, through hydrogels and ionomer carboxylate rubbers, to the almost infusible inorganic silicate minerals. For this reason, a general classification is not only difficult, but has minimal utility. However, there are some characteristics of these materials that should be highlighted. The role of counterions is the significant one. These ions, either singly or as clusters, take part in the formation of ionic bonds which have a varying structural role. Often they act as crosslinks, but in the halato-polymers the ionic bonds form an integral part of the polymer backbone itself. Conversely, in polymers contain- ing covalent crosslinks, such as the ion-exchange resins, the coun- terions have virtually no structural role to play, since they dwell in cage-like structures without affecting the crosslinking, and are readily exchanged. They are, perhaps, best described as ion-containing polymers rather than structural ionic poly
出版日期Book 1986
關(guān)鍵詞Elastomer; Ionomer; hydrogel; macromolecule; polyelectrolyte; polymer; polymers
版次1
doihttps://doi.org/10.1007/978-94-009-4187-8
isbn_softcover978-94-010-8360-7
isbn_ebook978-94-009-4187-8
copyrightElsevier Applied Science Publishers LTD and Imperial Chemical Industries PLC 1986
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Smectitic Clays as Ionic Macromolecules,charges that are balanced by gegen-ions. One of the differences from ionic polymers proper lies in the stiffness of the layers, which are about 1 nm thick. These layers rarely occur as isolated individual units, but aggregate to form crystalline structures. This structural order gives these materials several advantages over true ionic polymers.
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User Research for Experience VisionPolyquaternary ammonium compounds with the ammonium ion integral in the backbone of the polymer chain have been called ‘Ionenes’ or ‘Ionene polymers’, and represent a unique class of cationic polymers among various ion-containing polymers.
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Freddy Mampadi,Sherry Chen,Gheorghita GhineaIn this review the authors lay emphasis on recent trends and new topics as well as on fundamental findings on polyelectrolytes and their complexes called polyelectrolyte complexes (PEC), polyion complexes or polysalts.
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Preparation of Ionic Polymers,Ionic polymers have been defined. as organic or inorganic materials which contain both ionic and covalent bonds in their chain or network structure.
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Ionene Polymers: Preparation, Properties and Applications,Polyquaternary ammonium compounds with the ammonium ion integral in the backbone of the polymer chain have been called ‘Ionenes’ or ‘Ionene polymers’, and represent a unique class of cationic polymers among various ion-containing polymers.
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Polyelectrolyte Complexes,In this review the authors lay emphasis on recent trends and new topics as well as on fundamental findings on polyelectrolytes and their complexes called polyelectrolyte complexes (PEC), polyion complexes or polysalts.
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