Hydronium-Crosslinked Inorganic Hydrogel Comprised of 1D Lepidocrocite Titanate Nanofilaments.

Mieles, Matthew; Walter, Adam D; Wu, Simeng; Zheng, Yue; Schwenk, Gregory R; Barsoum, Michel W; Ji, Hai-Feng · Adv Mater · 2024

basic_science · Level V

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Abstract

When a few drops of acid (hydrochloric, acrylic, propionic, acetic, or formic) are added to a colloid comprised of 1D lepidocrocite titanate nanofilaments (1DLs)-2 × 2 TiO<sub>6</sub> octahedra in cross-section-a hydrogel forms, in many cases, within seconds. The 1DL synthesis process requires the reaction between titanium diboride with tetramethylammonium (TMA<sup>+</sup>), hydroxide. Using quantitative nuclear magnetic resonance (qNMR), thermogravimetric analysis (TGA), and differential scanning calorimetry (DSC), the mass percent of TMA<sup>+</sup> after synthesis is determined to be ≈ 13.1 ± 0.1%. The TMA<sup>+</sup> is completely removed from the gels after 2 water soak cycles, resulting in the first completely inorganic, TiO<sub>2</sub>-based hydrogels. Ion exchanging the TMA<sup>+</sup> with hydronium results in gels with relatively strong hydrogen bonds. The hydrogels' compression strengths increased linearly with 1DL colloid concentration. At a 1DL concentration of 45 g L<sup>-1</sup>, the compressive strength, at 80% deformation when acrylic acid is used, is ≈325 kPa. The strengths are ≈ 50% greater after the TMA<sup>+</sup> is removed. The removal of all residual organic components in the hydrogels, including TMA<sup>+</sup>, is confirmed by qNMR, Fourier-transformed infrared spectroscopy (FTIR), and TGA/DSC. The 1DL phase is retained after gelation, TMA<sup>+</sup> removal, and 80% compression.