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      The development of diesel oxidation catalysts and the effect of sulfur dioxide on catalysts of metal-based diesel oxidation catalysts: A review

      , , , , , , ,
      Fuel Processing Technology
      Elsevier BV

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          Additive manufacturing of polymer-derived ceramics.

          The extremely high melting point of many ceramics adds challenges to additive manufacturing as compared with metals and polymers. Because ceramics cannot be cast or machined easily, three-dimensional (3D) printing enables a big leap in geometrical flexibility. We report preceramic monomers that are cured with ultraviolet light in a stereolithography 3D printer or through a patterned mask, forming 3D polymer structures that can have complex shape and cellular architecture. These polymer structures can be pyrolyzed to a ceramic with uniform shrinkage and virtually no porosity. Silicon oxycarbide microlattice and honeycomb cellular materials fabricated with this approach exhibit higher strength than ceramic foams of similar density. Additive manufacturing of such materials is of interest for propulsion components, thermal protection systems, porous burners, microelectromechanical systems, and electronic device packaging.
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            Chemical structures and performance of perovskite oxides.

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              Nanostructured oxides in chemistry: characterization and properties.

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                Author and article information

                Journal
                Fuel Processing Technology
                Fuel Processing Technology
                Elsevier BV
                03783820
                August 2022
                August 2022
                : 233
                : 107317
                Article
                10.1016/j.fuproc.2022.107317
                6248c2bc-93b2-46ff-b664-0d9f3cf2a7c1
                © 2022

                https://www.elsevier.com/tdm/userlicense/1.0/

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