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Design and fabrication of fibrous media to facilitate autogenous smart self-healing properties in cracked-cementitious structures using polyethylene glycol (PEG) and silicon dioxide nanoparticles
Design and fabrication of fibrous media to facilitate autogenous smart self-healing properties in cracked-cementitious structures using polyethylene glycol (PEG) and silicon dioxide nanoparticles
Design and fabrication of fibrous media to facilitate autogenous smart self-healing properties in cracked-cementitious structures using polyethylene glycol (PEG) and silicon dioxide nanoparticles
Synergistic surface modification of LPBF-fabricated Ti-6Al-4V gyroid scaffolds using PEO and Nb/NbN multilayers: Towards antibacterial and bioactive performances
Synergistic surface modification of LPBF-fabricated Ti-6Al-4V gyroid scaffolds using PEO and Nb/NbN multilayers: Towards antibacterial and bioactive performances
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Mobarake Steel Company Project-1, Excellence Center in Applied Chemistry
Mobarake Steel Company Project-1, Excellence Center in Applied Chemistry
Mobarake Steel Company Project-1, Excellence Center in Applied Chemistry
Mobarake Steel Company Project-1, Center of Excellence in Applied Chemistry
Mobarake Steel Company Project-1, Center of Excellence in Applied Chemistry
Mobarake Steel Company Project-1, Center of Excellence in Applied Chemistry
Mobarake Steel Company Project-1, Center of Excellence in Applied Chemistry
Mobarake Steel Company Project-1, Center of Excellence in Applied Chemistry
Mobarake Steel Company Project-1, Center of Excellence in Applied Chemistry