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      Recent development of membranes for carbon capture: From materials to asymmetric membranes

      , , , , ,
      Progress in Materials Science
      Elsevier BV

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          Electric Field Effect in Atomically Thin Carbon Films

          We describe monocrystalline graphitic films, which are a few atoms thick but are nonetheless stable under ambient conditions, metallic, and of remarkably high quality. The films are found to be a two-dimensional semimetal with a tiny overlap between valence and conductance bands, and they exhibit a strong ambipolar electric field effect such that electrons and holes in concentrations up to 10 13 per square centimeter and with room-temperature mobilities of ∼10,000 square centimeters per volt-second can be induced by applying gate voltage.
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            Two-dimensional nanocrystals produced by exfoliation of Ti3 AlC2.

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              The chemistry and applications of metal-organic frameworks.

              Crystalline metal-organic frameworks (MOFs) are formed by reticular synthesis, which creates strong bonds between inorganic and organic units. Careful selection of MOF constituents can yield crystals of ultrahigh porosity and high thermal and chemical stability. These characteristics allow the interior of MOFs to be chemically altered for use in gas separation, gas storage, and catalysis, among other applications. The precision commonly exercised in their chemical modification and the ability to expand their metrics without changing the underlying topology have not been achieved with other solids. MOFs whose chemical composition and shape of building units can be multiply varied within a particular structure already exist and may lead to materials that offer a synergistic combination of properties.

                Author and article information

                Contributors
                Journal
                Progress in Materials Science
                Progress in Materials Science
                Elsevier BV
                00796425
                December 2024
                December 2024
                : 146
                : 101324
                Article
                10.1016/j.pmatsci.2024.101324
                4cc2a030-0988-483e-9bdc-d9d9de4ebc94
                © 2024

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