4.6 Article

The Interplay between Whey Protein Fibrils with Carbon Nanotubes or Carbon Nano-Onions

Journal

MATERIALS
Volume 14, Issue 3, Pages -

Publisher

MDPI
DOI: 10.3390/ma14030608

Keywords

whey protein fibrils; carbon nanotubes; carbon nano-onions; composites; interaction

Funding

  1. Applied Basic Research Program of Shanxi Province [201901D211033]
  2. Scientific and Technological Innovation Programs of Higher Education Institutions in Shanxi [2019L0641]

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In this study, WPI fibrils were combined with CNTs and CNOs using a specific process, and the composites were characterized using various analytical techniques. It was found that CNTs and CNOs could enhance the biocompatibility of the composites, and the structural properties of CNTs and CNOs were investigated.
Whey protein isolate (WPI) fibrils were prepared using an acid hydrolysis induction process. Carbon nanotubes (CNTs) and carbon nano-onions (CNOs) were made via the catalytic chemical vapor deposition (CVD) of methane. WPI fibril-CNTs and WPI fibril-CNOs were prepared via hydrothermal synthesis at 80 degrees C. The composites were characterized by SEM, TEM, FTIR, XRD, Raman, and TG analyses. The interplay between WPI fibrils and CNTs and CNOs were studied. The WPI fibrils with CNTs and CNOs formed uniform gels and films. CNTs and CNOs were highly dispersed in the gels. Hydrogels of WPI fibrils with CNTs (or CNOs) could be new materials with applications in medicine or other fields. The CNTs and CNOs shortened the WPI fibrils, which might have important research value for curing fibrosis diseases such as Parkinson's and Alzheimer's diseases. The FTIR revealed that CNTs and CNOs both had interactions with WPI fibrils. The XRD analysis suggested that most of the CNTs were wrapped in WPI fibrils, while CNOs were partially wrapped. This helped to increase the biocompatibility and reduce the cytotoxicity of CNTs and CNOs. HR-TEM and Raman spectroscopy studies showed that the graphitization level of CNTs was higher than for CNOs. After hybridization with WPI fibrils, more defects were created in CNTs, but some original defects were dismissed in CNOs. The TG results indicated that a new phase of WPI fibril-CNTs or CNOs was formed.

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