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Showing 1 to 4 of 4 for “"p-coumaryl alcohol"”.

  1. Interactions of Chitin and Lignin Thin Films with Other Molecules

    … dehydrogenative polymerization (DHP) of caffeyl alcohol (C-alcohol), and degraded through Fenton chemistry with all processes observed by a QCM-D and AFM. The synthetic rate and yield for C-DHP films was lower than DHP films made from coniferyl alcohol (G-alcohol) and p-coumaryl alcohol

    vt Repository record for Interactions of Chitin and Lignin Thin Films with Other Molecules (opens in a new tab)

  2. Rekombinante Biosynthese amino-substituierter Phenylpropanoide in E. coli

    … coli aims at the production of p-aminocinnamyl alcohol. This aromatic alcohol is a novel compound with several functional groups and it has significant similarity to the naturally occurring monolignol p-coumaryl alcohol. Unlike this substance there is no existing pathway known for the …

    aachen Repository record for Rekombinante Biosynthese amino-substituierter Phenylpropanoide in E. coli (opens in a new tab)

  3. Renewable Natural Polymer Thin Films and Their Interactions with Biomacromolecules

    … from QCM-D and AFM showed that coniferyl and p-coumaryl alcohol underwent polymerization directly, whereas sinapyl alcohol required the addition of a nucleophile for polymerization. Studies by QCM-D and AFM also indicated that the surface-initiated polymerization was greatly affected by the …

    vt Repository record for Renewable Natural Polymer Thin Films and Their Interactions with Biomacromolecules (opens in a new tab)

  4. Rekombinante Biosynthese von p-Cumarylalkohol in E. coli

    … and consists mainly of the monolignols p-cumarylalcohol, coniferylalcohol and sinapylalcohol. Additionally, derivatives of these monolignols can also be found. They are linked in a variety of ways within the lignin molecule, which has, so far, made it impossible to yield aromatic monomers from …

    aachen Repository record for Rekombinante Biosynthese von p-Cumarylalkohol in E. coli (opens in a new tab)