Phenomenological investigation of organic modified cements as biocompatible substrates interfacing model marine organisms

  • Zhao J
  • Yuan T
  • Huang H
  • et al.
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Abstract

Organic modification can generally endow inorganic materials with novel and promotional characteristics to fit into new functionalities. In this paper, new cement-based composite materials, with Portland cement as the substrate and polyacrylamide (PAM, alone) and PAM/chitosan as the functional components mixed with cement (bulk modified) or served as the surface coating (surface modified), were prepared and engineered as sampling substrates for biofilm and coral co-culture. In comparison to the bulk modified substrate and pure cement material, the surface modified substrate showed a balanced mechanical property, considering both bending and compressive strengths and distinctive surface features toward facilitating biofilm and coral growth, as characterized by spectroscopic, morphological, mechanical, and biofilm and coral co-culture experiments. We, thus, believe that the as-prepared surface modified substrate has the very potential to be applied as a substitute/alternative for the conventional cement material in the construction and engineering of artificial facilities with ecological protection functions.

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Zhao, J., Yuan, T., Huang, H., & Lu, X. (2024). Phenomenological investigation of organic modified cements as biocompatible substrates interfacing model marine organisms. Biointerphases, 19(5). https://doi.org/10.1116/6.0003811

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