4.7 Article

Highly efficient synthesis of titanium phosphate precursor for electroactive materials

期刊

CERAMICS INTERNATIONAL
卷 48, 期 2, 页码 2257-2272

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.ceramint.2021.10.004

关键词

Electroactive materials; Mechanochemistry; Synthesis; Titanium phosphate

资金

  1. Russian Science Foundation (RSF)
  2. RSF [17-19-01522]

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The novel minimalistic approach to the synthesis of two titanium phosphates of different composition from a solid TiOSO4•H2O precursor has been proposed, demonstrating high conductivity value and low activation energy, suitable for practical application in all-solid-state lithium batteries.
In recent years titanium phosphates (TiPs) have aroused considerable interest as multi-functional materials. Known methods of TiPs synthesis are rather complicated because they are based on wet chemistry in terms of which one-step synthesis of pure TiP fails. It is highly welcomed to develop a new approach to TiP production. In this work the novel minimalistic approach to the synthesis of two titanium phosphates of different composition from a solid TiOSO4 center dot H2O precursor has been proposed. Despite the fact that the TiOSO4 solutions are widely used for the synthesis of titanium phosphates, the solid compound as a titanium source has never been used before. The new mechanochemistry-based synthesis provides easy access to obtaining TiO(OH)(H2PO4)center dot H2O and Ti (HPO4)(2)center dot H2O (alpha-TiP) for 3 h and 5 h, respectively. The substitution of protons in alpha-TiP with Li+ and Al3+ by ionexchange reactions provide the formation of Li1.5Al0.5Ti1.5(PO4)(3) which is electroactive material. The proposed synthesis procedure is more technologically attractive compared with traditional methods, and enables direct production of highly dispersed monophasic powder (100-300 nm) of desired composition at 823 K. The material obtained demonstrates high conductivity value of 7.8.10(-4) S cm(-1) at 298 K, low activation energy of 0.27 eV, and can be used as a solid electrolyte for practical application in all-solid-state lithium batteries.

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