Micro X-ray Fluorescence (m-XRF)m-xrf

  1. K. Tsuji, K. Nakano, Development of a new confocal 3D-XRF instrument with an X-ray tube, J. Anal. At. Spectrom., 26 (2011) 305-309.
  2. 中野 和彦、 幸一、「走査型共焦点蛍光X線分析法による試料表面および表面近傍の三次元元素分析」、表面科学、31 (2010) 331-336.
  3. T. Yonehara, M. Yamaguchi, K. Tsuji, X-ray fluorescence imaging with polycapillary X-ray optics, Spectrochim. Acta Part B, 65 (2010) 441-444.
  4. T. Yonehara, D. Orita, K. Nakano, S. Komatani, S. Ohzawa, A. Bando, H. Uchihara, K. Tsuji, Development of a transportable μ-XRF spectrometer with polycapillary half lens, X-Ray Spectrom., 39 (2010) 78-82.
  5. K. Nakano, K. Tsuji, Development of Laboratory Confocal 3D-XRF Spectrometer and Nondestructive Depth Profiling, J. Anal. At. Spectrom., 25 (2010) 562-569.
  6. K. Nakano, K. Tsuji, Nondestructive elemental depth profiling of Japanese lacquerware Tamamushi-nuri by confocal 3D-XRF analysis in comparison with micro GE-XRFX-Ray Spectrom., 38 (2009) 446-450.
  7. A. Matsuda, K. Nakano, S. Komatani, S. Ohzawa, H. Uchihara, K. Tsuji, Fundamental characteristics of polycapillary x-ray optics combined with glass conical pinhole for micro x-ray fluorescence spectrometry, X-Ray Spectrom., 38 (2009) 258-262.
  8. K. Tsuji, K. Nakano, M. Yamaguchi, T. Yonehara, Micro and imaging x-ray analysis by using polycapillary x-ray optics, Proc. SPIE, 7077 (2008) 70770W-1~8.
  9. T. Yonehara, K. Tsuji, Development of a compact XRF probe using a ring-type secondary target, X-Ray Spectrom., 37, 503-507 (2008).
  10. 米原 翼、 幸一、「照射・検出同軸型の微小部XRFプローブの開発」、X線分析の進歩、39, 95-104 (2008).
  11. 辻 幸一、「X線発光分光」、分光研究、57 (2008) 29-41.
  12. K. Tsuji, T. Yonehara, K. Nakano, Application of confocal 3D micro XRF for solid/liquid interface analysis, Ana. Sci., 24 (2008) 99-103.
  13. A. Matsuda, Y. Nodera, K. Nakano, K. Tsuji, X-ray energy distribution in X-ray microbeam produced by polycapillary x-ray lens, Anal.Sci.,24 (2008) 843-846.
  14. J. Liang, Z. Li, K. Tsuji, K. Nakano, M. J. R. Nout, R. J. Hamer, Milling characteristics and distribution of phytic acid and zinc in rice kernels, Journal of Cereal Science, 48 (2008) 83-91 .
  15. K. Nakano, A. Matsuda, Y. Nodera, and K. Tsuji, Improvement of spatial resolution of μ-XRF by using a thin metal filter, X-Ray Spectrom., 37 (2008) 642-645.
  16. 辻 幸一、中野 和彦、「共焦点型3D蛍光X線分析装置による実験室での3D元素マッピング」、まてりあ, 46 (2007) 833.
  17. K. Tsuji, K. Nakano, X. Ding, Development of Confocal Micro-XRF Instrument using Two X-ray Beams, Spectrochim. Acta B, 62 (2007) 549-553.
  18. K. Tsuji, K. Nakano, Development of Confocal 3D micro XRF Spectrometer with Cr-Mo Dual Excitation, X-Ray Spectrom., 36 (2007)145-149.
  19. 辻 幸一、野寺 雄太、中野 和彦、共焦点型3次元蛍光X線分析装置の開発と微小部深さ方向分析への応用、表面科学、28, 447-452 (2007).
  20. K. Nakano, K. Tanaka, X. Ding, K. Tsuji, Development of a New TXRF Instrument using Polycapillary X-ray Lens, Spectrochim. Acta B, 61 (2006) 1105-1109.
  21. K. Tsuji, K. Tsutsumimoto, K .Nakano, K. Tanaka, A. Okhrimovskyy, Y. Konishi, and X. Ding, Time-Resolved μ-XRF and Elemental Mapping of Biological Materials, Advances in X-ray Analysis, 49 (2006) 296-301.
  22. K. Tsuji, A. Matsuda, K. Nakano, A. Okhrimovskyy, X-ray fluorescence analysis of soft materials using needle-type collimators enabling greater tolerance in analysis depth, Spectrochim. Acta B, 61, 460-464 (2006)
  23. 松田 晃典、辻 幸一、ニードル型コリメーターを用いた試料内部微小空間の蛍光X線分析、分析化学、55 (2006) 681-687.
  24. 中野 和彦,  辻 幸一, 共焦点型蛍光X線分析装置の開発と米試料の三次元分析, 分析化学、55 (2006) 427-432.
  25. 辻 幸一、「ポリキャピラリーX線レンズの基礎と応用」、ぶんせき「解説記事」、8月号 (2006) 378-382 .
  26. 田中 啓太、堤本 薫、荒井 正浩、辻 幸一、ポリキャピラリーX線レンズの特性評価、X線分析の進歩、37 (2006) 289-300 .
  27. K. Tsuji, K. Nakano, X. Ding, Micro X-ray Fluorescence Analysis at OCU, Physics Testing and Chemical Analysis, Part B Chemical Analysis, 141 (2005) 20.
  28. K. Tsuji, T. Emoto, Y. Matsuoka, Y. Miyatake, T. Nagamura, and X. Ding, Micro-XRF Instrument Developed in Combination with Atomic Force Microscope, Advances in X-Ray Analysis.,48 (2005) 221-228.
  29. K. Tsuji, T. Emoto, Y. Nishida, E. Tamaki, Y. Kikutani, A. Hibara, T. Kitamori, Grazing-exit micro x-ray fluorescence analyses for chemical microchip, Anal. Sci., 21 (2005) 799-803.
  30. K. Tsuji, T. Emoto, Y. Matsuoka, Y. Miyatake, T. Nagamura, and X. Ding, Micro-XRF Instrument Developed in Combination with Atomic Force Microscope, Powder Diffraction 20, 137-140 (2005).
  31. 江本哲也、小西洋太郎、X. Ding, 辻 幸一、キノア種子のX線元素マッピングにおける自己吸収の影響の軽減、X線分析の進歩、36 (2005) 267-274 .
  32. K. Tsuji, Micro-Trace X-ray Analysis –Development of Grazing-Exit-Micro X-Ray Fluorescence (GE-m-XRF) in Combination with Atomic Force Microscope (AFM)-, The proceedings of the 12th Osaka City University, International Symposium, 27-29 October, 2004, p137-142 (2004).
  33. T. Emoto, Y. Sato, Y. Konishi, X. Ding, K. Tsuji, Development and applications of grazing exit micro x-ray fluorescence instrument using a polycapillary x-ray lens, Spectrochim. Acta B, 59 (2004) 1291-1294 .
  34. K. Tsuji and F. Delalieux, Feasibility study of 3 dimensional XRF spectrometry using m-x-ray beam under grazing-exit conditions, Spectrochim. Acta B, 58 (2003) 2233-2238.
  35. K. Tsuji and F. Delalieux, Micro x-ray fluorescence using a pinhole aperture in quasi-contact mode, J. Anal. At. Spectrom., 17 (2002) 1405-1407.

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