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RISING beamline (BL28XU) for rechargeable battery analysis.
Tanida, H; Fukuda, K; Murayama, H; Orikasa, Y; Arai, H; Uchimoto, Y; Matsubara, E; Uruga, T; Takeshita, K; Takahashi, S; Sano, M; Aoyagi, H; Watanabe, A; Nariyama, N; Ohashi, H; Yumoto, H; Koyama, T; Senba, Y; Takeuchi, T; Furukawa, Y; Ohata, T; Matsushita, T; Ishizawa, Y; Kudo, T; Kimura, H; Yamazaki, H; Tanaka, T; Bizen, T; Seike, T; Goto, S; Ohno, H; Takata, M; Kitamura, H; Ishikawa, T; Ohta, T; Ogumi, Z.
Afiliação
  • Tanida H; Kyoto University, Japan.
  • Fukuda K; Kyoto University, Japan.
  • Murayama H; Kyoto University, Japan.
  • Orikasa Y; Kyoto University, Japan.
  • Arai H; Kyoto University, Japan.
  • Uchimoto Y; Kyoto University, Japan.
  • Matsubara E; Kyoto University, Japan.
  • Uruga T; JASRI/SPring-8, Japan.
  • Takeshita K; JASRI/SPring-8, Japan.
  • Takahashi S; JASRI/SPring-8, Japan.
  • Sano M; JASRI/SPring-8, Japan.
  • Aoyagi H; JASRI/SPring-8, Japan.
  • Watanabe A; JASRI/SPring-8, Japan.
  • Nariyama N; JASRI/SPring-8, Japan.
  • Ohashi H; JASRI/SPring-8, Japan.
  • Yumoto H; JASRI/SPring-8, Japan.
  • Koyama T; JASRI/SPring-8, Japan.
  • Senba Y; JASRI/SPring-8, Japan.
  • Takeuchi T; JASRI/SPring-8, Japan.
  • Furukawa Y; JASRI/SPring-8, Japan.
  • Ohata T; JASRI/SPring-8, Japan.
  • Matsushita T; JASRI/SPring-8, Japan.
  • Ishizawa Y; JASRI/SPring-8, Japan.
  • Kudo T; JASRI/SPring-8, Japan.
  • Kimura H; JASRI/SPring-8, Japan.
  • Yamazaki H; JASRI/SPring-8, Japan.
  • Tanaka T; JASRI/SPring-8, Japan.
  • Bizen T; JASRI/SPring-8, Japan.
  • Seike T; JASRI/SPring-8, Japan.
  • Goto S; JASRI/SPring-8, Japan.
  • Ohno H; JASRI/SPring-8, Japan.
  • Takata M; JASRI/SPring-8, Japan.
  • Kitamura H; JASRI/SPring-8, Japan.
  • Ishikawa T; JASRI/SPring-8, Japan.
  • Ohta T; Ritsumeikan University, Japan.
  • Ogumi Z; Kyoto University, Japan.
J Synchrotron Radiat ; 21(Pt 1): 268-72, 2014 Jan.
Article em En | MEDLINE | ID: mdl-24365948
ABSTRACT
The newly installed BL28XU beamline at SPring-8 is dedicated to in situ structural and electronic analysis of rechargeable batteries. It supports the time range (1 ms to 100 s) and spatial range (1 µm to 1 mm) needed for battery analysis. Electrochemical apparatus for battery charging and discharging are available in experimental hutches and in a preparation room. Battery analysis can be carried out efficiently and effectively using X-ray diffraction, X-ray absorption fine-structure analysis and hard X-ray photoelectron spectroscopy. Here, the design and performance of the beamline are described, and preliminary results are presented.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2014 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2014 Tipo de documento: Article