Zurück zu den Ergebnissen
Bibliografischer Datensatz · Ansicht und Zugriff
Artículo

Preparation of 11nm ultrafine silica from fluorosilicic acid and study on its formation mechanism

Tao Zhang et al · SAGE Publishing · 2026

Open Access verfügbar
Schnellübersicht. Prüfen Sie die grundlegenden Angaben und öffnen Sie den Inhalt über die Hauptschaltfläche. Die Seite zeigt nur die Informationen, die zum Identifizieren, Zitieren und Öffnen des Werks nötig sind.

Zugriff auf die Ressource

Öffnen Sie den Inhalt über die Hauptoption oder wählen Sie eine andere verfügbare Quelle.

DOAJ DOAJ Articles
Entrar por DOAJ
Hauptzugriff

Open Access verfügbar

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Ressource öffnen

Übersicht

Descripción general del contenido del recurso.

Ultrafine nano-silica, with its smaller particle size compared to conventional nano-silica, is typically synthesized via gas-phase methods that require complex raw materials and processes. Here, we report optimized conditions for preparing ultrafine nano-silica via a precipitation reaction between fluosilicic acid waste and aluminum hydroxide. The optimal conditions determined were as follows: reverse feeding, surfactant addition at 3.0%, aluminum-to-silicon ratio of 2.00, reaction time of 30 min, reaction temperature of 90 °C, and stirring rate of 250 rpm. Under these conditions, ultrafine nano-silica with a uniform particle size of approximately 11 nm was successfully synthesized. Characterization of samples prepared by different feeding methods showed that the reverse feeding method yielded ultrafine nano-silica with superior performance indicators compared to the forward feeding method. Analysis of system changes during synthesis indicated that the feeding method influenced the acidic or alkaline environment of the substrate, affecting SiF 4 hydrolysis and the subsequent dehydration and condensation of Si-(OH) 4 monomers, leading to variations in silica particle agglomeration. Further, an analysis of the effects of alkyl chains in surfactants on the surfaces of silica particles, including -OH substitution or Si-O-Si bond cleavage, provided insights into the action mechanism of surface groups on ultrafine nano-silica particles.

Zitieren

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, T. Z. E. (2026). Preparation of 11nm ultrafine silica from fluorosilicic acid and study on its formation mechanism. https://doi.org/10.1177/18479804261444198

MLA

al, Tao Zhang et. "Preparation of 11nm ultrafine silica from fluorosilicic acid and study on its formation mechanism." 2026. https://doi.org/10.1177/18479804261444198.

Chicago

al, Tao Zhang et. 2026. "Preparation of 11nm ultrafine silica from fluorosilicic acid and study on its formation mechanism.". https://doi.org/10.1177/18479804261444198.

Harvard

al, T. Z. E. 2026, Preparation of 11nm ultrafine silica from fluorosilicic acid and study on its formation mechanism, SAGE Publishing, available at: https://doi.org/10.1177/18479804261444198 [Accessed 5 Aug. 2026].

Teilen und drucken

Speichern Sie den Datensatz, kopieren Sie den Permalink oder drucken Sie ihn als PDF.

Referenz exportieren

Exportieren Sie den Datensatz in gängigen Formaten für Literaturverwaltungsprogramme.

Ressourcendetails

Bibliografische Angaben zur Prüfung, ob es sich um das richtige Material handelt.

Titel
Preparation of 11nm ultrafine silica from fluorosilicic acid and study on its formation mechanism
Autor / Mitwirkende
Tao Zhang et al
Verlag
SAGE Publishing
Erscheinungsjahr
2026
ISSN
1847-9804
ISSN
1847-9804
Sprache
Inglés
Kopiert