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Conductive Nanosized Magnéli-Phase Ti4O7 with a Core@Shell Structure.
Takimoto, Daisuke; Toda, Yosuke; Tominaka, Satoshi; Mochizuki, Dai; Sugimoto, Wataru.
Affiliation
  • Takimoto D; Center for Energy and Environmental of Science , Shinshu University , Tokida 3-15-1 , Ueda , Nagano 386-8567 , Japan.
  • Toda Y; Faculty of Textile Science and Technology , Shinshu University , Tokida 3-15-1 , Ueda , Nagano 386-8567 , Japan.
  • Tominaka S; International Center for Materials Nanoarchitectonics (MANA) , National Institute for Materials Science (NIMS) , Namiki 1-1 , Tsukuba , Ibaraki 305-0044 , Japan.
  • Mochizuki D; Center for Energy and Environmental of Science , Shinshu University , Tokida 3-15-1 , Ueda , Nagano 386-8567 , Japan.
  • Sugimoto W; Faculty of Textile Science and Technology , Shinshu University , Tokida 3-15-1 , Ueda , Nagano 386-8567 , Japan.
Inorg Chem ; 58(10): 7062-7068, 2019 May 20.
Article in En | MEDLINE | ID: mdl-31070903
Magnéli-phase Ti4O7, known for its high electrical conductivity and corrosion resistance, is typically prepared by hydrogen reduction at high temperatures (∼1000 °C), leading to large particles. Nanosized Ti4O7 have been explored for application toward high specific surface area electrode materials and electrocatalyst supports; nonetheless, the particle size of Ti4O7 is still insufficient for utilization as a support. In this study, we have pursued a novel synthetic approach for nanosized Ti4O7 platelets with a length of 10-80 nm and thickness of 3-10 nm even under high-temperature conditions. We herein describe the use of SiO2 beads as a core to obtain a SiO2 core coated with multilayers of TiO2 nanosheets exfoliated from layered H2Ti4O7 which is subsequently subjected to high-temperature reduction to prepare a SiO2-core@Ti4O7-shell structure. The pair distribution function technique has proven that the shell is transformed to single-phase Ti4O7. The electrical double layer capacitance of SiO2-core@Ti4O7-shell was much larger than that of conventionally synthesized Ti4O7 particles with a micrometer size. The results show the beneficial effects of the SiO2-core@Ti4O7-shell structure, and it is the first example of the synthesis for conductive Ti4O7 with a high specific surface area even under conditions of high-temperature synthesis.

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Inorg Chem Year: 2019 Document type: Article Affiliation country: Japan Country of publication: United States

Full text: 1 Collection: 01-internacional Database: MEDLINE Language: En Journal: Inorg Chem Year: 2019 Document type: Article Affiliation country: Japan Country of publication: United States