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Enzyme immobilization inside the porous wood structure: a natural scaffold for continuous-flow biocatalysis
Goldhahn, C., Taut, J. A., Schubert, M., Burgert, I., & Chanana, M. (2020). Enzyme immobilization inside the porous wood structure: a natural scaffold for continuous-flow biocatalysis. RSC Advances, 10(35), 20608-20619. https://doi.org/10.1039/c9ra10633b
Design of a hierarchically structured hybrid material <I>via in situ</I> assembly of a silica aerogel into a wood cellular structure
Sedighi Gilani, M., Zhao, S., Gaan, S., Koebel, M. M., & Zimmermann, T. (2016). Design of a hierarchically structured hybrid material via in situ assembly of a silica aerogel into a wood cellular structure. RSC Advances, 6(67), 62825-62832. https://doi.org/10.1039/C6RA12480A
Improvement of wood material properties <I>via in situ</I> polymerization of styrene into tosylated cell walls
Ermeydan, M. A., Cabane, E., Gierlinger, N., Koetz, J., & Burgert, I. (2014). Improvement of wood material properties via in situ polymerization of styrene into tosylated cell walls. RSC Advances, 4(25), 12981-12988. https://doi.org/10.1039/C4RA00741G