4.6 Article

Sepiolite-Hydrogels: Synthesis by Ultrasound Irradiation and Their Use for the Preparation of Functional Clay-Based Nanoarchitectured Materials

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FRONTIERS IN CHEMISTRY
卷 9, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fchem.2021.733105

关键词

sepiolite; ultrasonication; gelation; hydrogels; xerogels; nanoarchitectures; clays; layered double hydroxides

资金

  1. Agencia Estatal de Investigacion (AIE, Spain)
  2. FEDER Program (EU) [PID 2019-105479RB-I00]
  3. EU COST action [MP1202]

向作者/读者索取更多资源

This study reports the ability to generate highly viscous and stable hydrogels from ground sepiolite through sonomechanical irradiation, leading to comparable rheological properties to commercial products upon re-dispersion in water. These colloidal systems have the potential to stabilize diverse compounds and nano/micro-particles, enabling the production of a wide variety of composites and nano/micro-architectured solids.
Sepiolite and palygorskite fibrous clay minerals are 1D silicates featuring unique textural and structural characteristics useful in diverse applications, and in particular as rheological additives. Here we report on the ability of grinded sepiolite to generate highly viscous and stable hydrogels by sonomechanical irradiation (ultrasounds). Adequate drying of such hydrogels leads to low-density xerogels that show extensive fiber disaggregation compared to the starting sepiolite-whose fibers are agglomerated as bundles. Upon re-dispersion in water under high-speed shear, these xerogels show comparable rheological properties to commercially available defibrillated sepiolite products, resulting in high viscosity hydrogels that minimize syneresis. These colloidal systems are thus very interesting as they can be used to stabilize many diverse compounds as well as nano-/micro-particles, leading to the production of a large variety of composites and nano/micro-architectured solids. In this context, we report here various examples showing how colloidal routes based on sepiolite hydrogels can be used to obtain new heterostructured functional materials, based on their assembly to solids of diverse topology and composition such as 2D and 1D kaolinite and halloysite aluminosilicates, as well as to the 2D synthetic Mg,Al-layered double hydroxides (LDH).

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