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- W2499338093 abstract "Interest in the design of porous polymeric materials originates from the wide array of applications in which they are involved, for example, monoliths for chromatographic techniques, selective membranes, interlayer dielectrics, high surface area catalytic supports, as well as size/shape-selective nanoreactors. In addition to the classical synthetic strategies based on the use of simple porogens such as solvents or gases, original approaches using suitable porogen templates that are able to induce specific structural pores within the residual structures have emerged. These template-oriented routes are very interesting, as a wealth of porous polymers with controlled porosity can be derived from miscellaneous macromolecular architectures. Straightforward and versatile routes to porous crosslinked materials have been put forward only by a few research teams via the utilization of semi-interpenetrating polymer networks (semi-IPNs) and IPNs as nanostructured precursors. This chapter offers a critically selected overview of the synthetic strategies implemented to generate macro- to nanoporous polymer systems from (semi-)IPNs, and discusses the scope and limitations associated with the use of such routes. We particularly focus on our original contributions in this research field." @default.
- W2499338093 created "2016-08-23" @default.
- W2499338093 creator A5029175567 @default.
- W2499338093 date "2016-03-11" @default.
- W2499338093 modified "2023-09-30" @default.
- W2499338093 title "Macro-, Meso-, and Nanoporous Systems Designed from IPNs" @default.
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- W2499338093 doi "https://doi.org/10.1002/9781119138945.ch5" @default.
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