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Journal Articles

Oxidation of anatase TiO$$_{2}$$(001) surface using supersonic seeded oxygen molecular beam

Katsube, Daiki*; Ono, Shinya*; Takayanagi, Shuhei*; Ojima, Shoki*; Maeda, Motoyasu*; Origuchi, Naoki*; Ogawa, Arata*; Ikeda, Natsuki*; Aoyagi, Yoshihide*; Kabutoya, Yuito*; et al.

Langmuir, 37(42), p.12313 - 12317, 2021/10

 Times Cited Count:1 Percentile:6.39(Chemistry, Multidisciplinary)

We investigated the oxidation of oxygen vacancies at the surface of anatase TiO$$_{2}$$(001) using supersonic seeded molecular beam (SSMB) of oxygen. The oxygen vacancies at the top-surface and sub-surface could be eliminated by the supply of oxygen using an SSMB. These results indicate that the interstitial vacancies can be mostly assigned to oxygen vacancies, which can be effectively eliminated by using an oxygen SSMB. Oxygen vacancies are present on the surface of anatase TiO$$_{2}$$(001) when it is untreated before transfer to a vacuum chamber. These vacancies, which are stable in the as-grown condition, could also be effectively eliminated using the oxygen SSMB.

Journal Articles

Fabrication and characterization of anatase TiO$$_{2}$$ thin films on glass substrate grown by pulsed laser deposition

Choi, Y.; Yamamoto, Shunya; Umebayashi, Tsutomu; Yoshikawa, Masahito

Solid State Ionics, 172(1-4), p.105 - 108, 2004/08

 Times Cited Count:41 Percentile:82.25(Chemistry, Physical)

no abstracts in English

Journal Articles

Analogue studies in the Alligator Rivers region of Australia; Contribution to the scientific basis for the performance assessment of proposed repository sites

H.M.Garnett*; P.L.Airey*; Sekine, Keiichi; P.-S.Hahn*; W.R.Ott*; C.Pescatore*

10th Pacific Basin Nuclear Conf. (10-PBNC), 2, p.1335 - 1342, 1996/00

no abstracts in English

Patent

窒素元素ドープ酸化チタンの製造方法

吉越 章隆

阿部 真之*; 勝部 大樹*; 大野 真也*

JP, 2019-153049  Patent licensing information  Patent publication (In Japanese)

【課題】 効率的なN元素ドープTIO2の製造方法を提供する。 【解決手段】本発明に係るN元素ドープTIO2の製造方法は、ターゲットとなるTIO2を真空チャンバ内の所定位置に配置するステップと、真空チャンバを真空引きするステップと、ノズルを所定温度に加熱するステップと、ノズルを所定温度に維持しつつ、ノズルからNO分子の超音速分子線をターゲットに照射するステップとを備える。

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