発表論文リスト

  1. 日本分析化学会誌2021年4月号巻頭記事. https://our.corestein.com/wp-content/uploads/2021/05/ぶんせき2021年4月巻頭記事p141.pdf
  2. K. Ishikiriyama, New trend in materials research and development, MRSJ News, 31(3), 1 (2019). https://wp.me/abo2xj-160
  3. K.Ishikiriyama, Utilization of Thermal Analysis in Polymer Material Development, Netsu Sokutei, 46 (4), 155-162 (2019). https://wp.me/abo2xj-14e
  4. Yoshitomo Furushima, Masaru Nakada, Kazuhiko Ishikiriyama, Akihiko Toda, Rene Androsch, Evgeny Zhuravlev, Christoph Schick, Two Crystal Populations with Different Melting/Reorganization Kinetics of Isothermally Crystallized Polyamide 6, J. Polymer Sci., Part B, Polymer Phys., 54, 2126-2138 (2016).
    https://wp.me/abo2xj-157
  5. Yoshitomo Furushima, Masaru Nakada, Hideaki Takahashi, Kazuhiko Ishikiriyama, Study of melting and crystallization behavior of polyacrylonitrile using ultrafast differential scanning calorimetry, Polymer, 55, 3075-3081 (2014). https://wp.me/abo2xj-15m
  6. Yoshitomo Furushima, Kazuhiko Ishikiriyama, Takuji Higashioji, The characteristic length of cooperative rearranging region for uniaxial drawn poly(ethylene terephthalate) films, Polymer, 54(16), 4078-4084 (2013). https://wp.me/abo2xj-15o
  7. Yoshitomo Furushima, Kazuhiko Ishikiriyamaa, Yoshiyuki Ueno, Hiroyuki Sugaya, Analysis of the state of water in polyvinylpyrrolidone aqueous solutions using DSC method, Thermochimica Acta, 538, 43-47 (2012).
    https://wp.me/abo2xj-154
  8. K.Ishikiriyama, 繊維と工業, 65(11), 428(2009). https://wp.me/abo2xj-14d
  9. Ichiro Hatta, Kana Nakanishi b, Kazuhiko Ishikiriyama , Thermal analysis of stratum corneum of hairless mouse with attention to phase transitions near 35 °C, Thermochimica Acta, 431, 94-97 (2005). https://wp.me/abo2xj-15p
  10. M.Todoki and K.Ishikiriyama, Melting Behavior of Nanosize Crysttal Part2 Melting Point of Polymer Crystals, 日本ゴム協会誌, 76(7), 247-254 (2003).
    https://wp.me/abo2xj-16J
  11. M.Todoki and K.Ishikiriyama, Melting Behavior of Nanosize Crysttal Part1 Thermodynamics Description of Melting Point of Ice,日本ゴム協会誌, 76(7), 240-246 (2003).https://wp.me/abo2xj-16K
  12. A. Boller, I. Okazaki, K. Ishikiriyama, G. Zhang and B. Wunderlich, Determination of Cell Asymmetry in Temperature Modulated DSC, J. Thermal Analysis, 49, 1081-1088 (1997). https://wp.me/abo2xj-16Q
  13. B. Wunderlich, A. Boller, I. Okazaki, and K. Ishikiriyama, Heat Capacity Determination by Temperature-Modulated DSC and its Separation from Transition Effects, Thermochim. Acta, 304/305, 125-136 (1997).
    https://wp.me/abo2xj-158
  14. K. Ishikiriyama and B. Wunderlich, Cell Asymmetry Correction for Temperature Modulated Differential Scanning Calorimetry, J. Thermal Analysis, 50, 337-346 (1997). https://wp.me/abo2xj-16N
  15. K. Ishikiriyama, A. Boller, and B. Wunderlich, Melting of Indium by Temperature-Modulated Differential Scanning Calorimetry, J. Thermal Analysis, 50, 547-558 (1997). https://wp.me/abo2xj-16P
  16. K. Ishikiriyama and B. Wunderlich, Crystallization and Melting of Poly(oxyethylene) Analyzed by Temperature-Modulated Calorimetry, J. Polymer Sci., Part B, Polymer Phys., 35, 1877-1886 (1997).
    https://wp.me/abo2xj-15g
  17. K. Ishikiriyama and B. Wunderlich, Melting of Poly(oxyethylene) Analyzed by Temperature-Modulated Calorimetry, Macromolecules, 30, 4126-4131 (1997).  https://wp.me/abo2xj-15d
  18. B. Wunderlich, I. Okazaki, K. Ishikiriyama, and A. Boller, Melting by Temperature-Modulated Calorimetry, Proc. 25th NATAS Conf. in McLean, Va., Sept. 7-9, 1997, R. G. Morgan, ed., 49-56.
  19. K. Ishikiriyama, M. Pyda, G. Zhang, T. Forschner, J. Grebowicz, and B. Wunderlich, Heat Capacity of Poly-p-Dioxanone, J. Macromol. Sci. Part B: Physics, 37, 27-44 (1998). https://wp.me/abo2xj-15l
  20. B. Wunderlich, I. Okazaki, K. Ishikiriyama, and A. Boller, Melting by Temperature-Modulated Calorimetry, Thermochim. Acta., 324, 77-85 (1998). https://wp.me/abo2xj-141
  21. B. Wunderlich, A. Boller, I. Okazaki, K. Ishikiriyama, W. Chen, M. Pyda, J. Pak, I. Moon, and R. Androsch, Temperature-Modulated Differential Scanning Calorimetry of Reversible and Irreversible First-Order Transitions, Thermochim. Acta, 330, 21-38 (1999). https://wp.me/abo2xj-15n
  22. K. Ishikiriyama, M. Todoki, K. H. Min, S. Yonemori, and M. Noshiro, THERMOPOROSIMETRY Pore size distribution measurements for microporous glass using differential scanning Calorimetry, J. Thermal Analysis, 46, 1177 (1996). https://wp.me/abo2xj-16O
  23. K. Ishikiriyama and M. Todoki, Heat Capacity of Water in Poly(Methyl Methacrylate Hydrogel Membrane for an Artificial Kidney, J. Polym. Sci. Part B Polymer Phys., 33, 791 (1995).
    https://wp.me/abo2xj-140
  24. K. Ishikiriyama and M. Todoki, Evaluation of water in silica pores using differential scanning Calorimetry, Thermochimica Acta, 256, 213 (1995). https://wp.me/abo2xj-13Y
  25. K. Ishikiriyama, A. Sakamoto, M. Todoki, T. Tayama, K. Tanaka and T. Kabayashi, Pore size distribution measurements of polymer hydrogel membranes for artificial kidneys using differential scanning calorimetry, Thermochimica Acta, 267, 169 (1995).  https://wp.me/abo2xj-15j 
  26. K. Ishikiriyama, M. Todoki, T. Kobayashi and H. Tanzawa, Pore Size Distribution Measurements of Poly(methyl methacrylate) Hydrogel Membranes for Artificial Kidneys Using Differential Scanning Calorimetry, J. Colloid Interface Sci., 173, 419 (1995). https://wp.me/abo2xj-15i 
  27. K. Ishikiriyama and M. Todoki, Pore Size Distribution (PSD) Measurements of Silica Gels by Means of Differential Scanning Calorimetry II. Thermoporosimetry, J. Colloid Interface Sci., 171, 103 (1995).
    https://wp.me/abo2xj-15k
  28. K. Ishikiriyama, M. Todoki, and K. Motomura, Pore Size Distribution (PSD) Measurements of Silica Gels by Means of Differential Scanning Calorimetry I. Optimization for Determination of PSD, J. Colloid Interface Sci., 171, 92 (1995). https://wp.me/abo2xj-15h
  29. 石切山,十時,田中,小林,国友,腎と透析 第34巻別冊,p44-46 (1993).(Japanese)
  30. K.Ishikiriyama,Use of Melting Point Depression of Ice for Determination of Pore Size in Hollow Fiber Membranes for Artificial Kidney, Netsu Sokutei, 18(4), 229-231(1991). https://wp.me/abo2xj-16L
  31. A. Yamada-Nosaka, K. Ishikiriyama, M. Todoki and H. Tanzawa, 1H-NMR Studies on Water on Methacrylate Hydrogels. I, J. Appl. Polym. Sci., 39, 2443 (1990) . https://wp.me/abo2xj-15q
  32. 石切山一彦,十時 稔,” 細孔径分布測定へのDSC法の応用(その1)”, Netsu Sokutei, 14,125 (1987). https://wp.me/abo2xj-16M
  33. 片山真一郎,石切山一彦,十時稔,”DSCによる比熱容量測定 我々の工夫”,Netsu Sokutei, 13, 117 (1986).