\u3cp\u3eThe textural properties of amorphous silica play a fundamental role in its final properties and, therefore, in its possible applications. The aim of this study is to gain comprehensive understanding about how the process conditions influence the pore structure of silica synthesized below the isoelectric point and find possible solutions to tailor the final properties of nano-silica. This study was conducted using the mineral olivine as silica source and dissolving it in sulfuric acid. This synthesis method is an interesting and sustainable alternative to the existing commercial methods. This nano-silica exhibits a specific surface area in the range of 100–500 m\u3csup\u3e2\u3c/sup\u3e/g and a pore size distribution of 1–100 nm for ...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The textural properties of amorphous silica play a fundamental role in its final properties and, the...
The textural properties of amorphous silica play a fundamental role in its final properties and, the...
The textural properties of amorphous silica play a fundamental role in its final properties and, the...
The textural properties of amorphous silica play a fundamental role in its final properties and, the...
The textural properties of amorphous silica play a fundamental role in its final properties and, the...
Nano-silica is one of the most used nano-materials, and its use is rising 5.6% per year to reach a p...
Nano-silica is one of the most used nano-materials, and its use is rising 5.6% per year to reach a p...
Nano-silica is one of the most used nano-materials, and its use is rising 5.6% per year to reach a p...
This study addresses the synthesis of amorphous mesoporous nano-silica by the dissolution of olivine...
This study addresses the synthesis of amorphous mesoporous nano-silica by the dissolution of olivine...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The textural properties of amorphous silica play a fundamental role in its final properties and, the...
The textural properties of amorphous silica play a fundamental role in its final properties and, the...
The textural properties of amorphous silica play a fundamental role in its final properties and, the...
The textural properties of amorphous silica play a fundamental role in its final properties and, the...
The textural properties of amorphous silica play a fundamental role in its final properties and, the...
Nano-silica is one of the most used nano-materials, and its use is rising 5.6% per year to reach a p...
Nano-silica is one of the most used nano-materials, and its use is rising 5.6% per year to reach a p...
Nano-silica is one of the most used nano-materials, and its use is rising 5.6% per year to reach a p...
This study addresses the synthesis of amorphous mesoporous nano-silica by the dissolution of olivine...
This study addresses the synthesis of amorphous mesoporous nano-silica by the dissolution of olivine...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...
The production of porous amorphous nano-silica by the olivine route is an interesting alternative to...