2023
DOI: 10.1007/s13233-023-00142-9
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Biomedical applications of silica-based aerogels: a comprehensive review

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Cited by 11 publications
(8 citation statements)
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“…This silicification process inspired by nature relies solely on the interaction between long-chain polyamines and silicic acid under acidic conditions, presenting an advancement of the biomimetic approach toward the creation of flexible composites with mechanical strength. For a start, this process is sustainable, cost-effective and eliminates the use of toxic starting materials, which tackles key issues addressed when considering biomedical applications of biopolymeric aerogels 40 . With diffusion limitations of silane precursors into the depths of a monolith, the approach presented here is best suited for silicifying thin films or microparticles.…”
Section: Discussionmentioning
confidence: 99%
“…This silicification process inspired by nature relies solely on the interaction between long-chain polyamines and silicic acid under acidic conditions, presenting an advancement of the biomimetic approach toward the creation of flexible composites with mechanical strength. For a start, this process is sustainable, cost-effective and eliminates the use of toxic starting materials, which tackles key issues addressed when considering biomedical applications of biopolymeric aerogels 40 . With diffusion limitations of silane precursors into the depths of a monolith, the approach presented here is best suited for silicifying thin films or microparticles.…”
Section: Discussionmentioning
confidence: 99%
“…The component from which the aerogel is hydrolyzed and synthesized is a catalyst, which can be acid, base, or a two-step [ 5 , 54 , 57 ]. During the gel preparation phase, the solid nanoparticles spread into it and adhere together to build a medium of particles covering the liquid.…”
Section: Preparation Methodsmentioning
confidence: 99%
“…In essence, in the sol-gel method, the first step is the preparation of a precursor of the colloidal matrix in a sol(liquid). Next is the gel manufacture, a porous solid stage where the porosity can be tailored by balancing the condensation and hydrolysis rate by settling different parameters, such as pH and the chemical composition of the specific precursors and temperature [ 2 , 57 ].…”
Section: Preparation Methodsmentioning
confidence: 99%
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“…Additionally, in the sports industry, hydrophobic silica aerogels with tunable mechanical strength can be used to make protective gear, such as helmets, pads, and gloves, that offer both comfort and safety to athletes [38]. The biomedical industry can also benefit from these aerogels, particularly in tissue engineering applications where they can provide a scaffold for cell growth and regeneration [39]. The potential applications of hydrophobic silica aerogels with enhanced properties are vast, and their continued development could lead to the creation of high-performance materials that are versatile, lightweight, and adaptable, by expanding a variety of industries.…”
Section: Comparison and Application Prospect Of As-prepared Modified ...mentioning
confidence: 99%