Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched Polylysine

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Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
XPS survey spectra of the cotton fabric samples on a wide range a, the
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched Polylysine
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
Self-Adaptive Antibacterial Coating for Universal Polymeric Substrates Based on a Micrometer-Scale Hierarchical Polymer Brush System
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
Bioinspired and eco-friendly high efficacy cinnamaldehyde antibacterial surfaces - Journal of Materials Chemistry B (RSC Publishing) DOI:10.1039/D0TB02379E
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
PDF) Development of Durable Antibacterial Textile Fabrics for Potential Application in Healthcare Environment
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
Nanomaterials, Free Full-Text
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
Cost-effective fabrication, antibacterial application and cell viability studies of modified nonwoven cotton fabric
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
Bioinspired and eco-friendly high efficacy cinnamaldehyde antibacterial surfaces - Journal of Materials Chemistry B (RSC Publishing) DOI:10.1039/D0TB02379E
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
Antibacterial activity of chemically versus enzymatic functionalized wool with ɛ-poly-L-lysine - Maja Kaisersberger-Vincek, Janez Štrancar, Vanja Kokol, 2017
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
Synthetic Random Copolymers as a Molecular Platform To Mimic Host-Defense Antimicrobial Peptides
Nonleaching Antimicrobial Cotton Fabrics Finished with Hyperbranched  Polylysine
Nanoengineering-based approaches for antimicrobial materials and coatings - ScienceDirect
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