{"id":4293,"date":"2020-03-08T20:14:00","date_gmt":"2020-03-08T11:14:00","guid":{"rendered":"https:\/\/our.corestein.com\/?p=4293"},"modified":"2021-05-01T23:41:08","modified_gmt":"2021-05-01T14:41:08","slug":"papers","status":"publish","type":"post","link":"https:\/\/our.corestein.com\/?p=4293","title":{"rendered":"\u767a\u8868\u8ad6\u6587\u30ea\u30b9\u30c8"},"content":{"rendered":"\n<ol class=\"wp-block-list\"><li>\u65e5\u672c\u5206\u6790\u5316\u5b66\u4f1a\u8a8c2021\u5e744\u6708\u53f7\u5dfb\u982d\u8a18\u4e8b. https:\/\/our.corestein.com\/wp-content\/uploads\/2021\/05\/\u3075\u3099\u3093\u305b\u304d2021\u5e744\u6708\u5dfb\u982d\u8a18\u4e8bp141.pdf<\/li><li>K. Ishikiriyama, New trend in materials research and development, <em>MRSJ News<\/em>, 31(3), 1 (2019). <a href=\"https:\/\/wp.me\/abo2xj-160\"><em>https:\/\/wp.me\/abo2xj-160<\/em><\/a><\/li><li>K.Ishikiriyama, Utilization of Thermal Analysis in Polymer Material Development, Netsu Sokutei, <strong>46<\/strong> (4), 155-162 (2019).\u3000<a href=\"https:\/\/wp.me\/abo2xj-14e\"><em>https:\/\/wp.me\/abo2xj-14e<\/em><\/a><\/li><li>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,  <em>J. Polymer Sci., Part B, Polymer Phys.<\/em>,  <strong>54<\/strong>, 2126-2138 (2016).<br><a href=\"https:\/\/wp.me\/abo2xj-157\"><em>https:\/\/wp.me\/abo2xj-157<\/em><\/a><\/li><li>Yoshitomo Furushima, Masaru Nakada, Hideaki Takahashi, Kazuhiko Ishikiriyama, Study of melting and crystallization behavior of polyacrylonitrile using ultrafast differential scanning calorimetry, <em>Polymer<\/em>, <strong>55<\/strong>, 3075-3081 (2014).  <a href=\"https:\/\/wp.me\/abo2xj-15m\"><em>https:\/\/wp.me\/abo2xj-15m<\/em><\/a> <\/li><li>Yoshitomo Furushima, Kazuhiko Ishikiriyama, Takuji Higashioji, The characteristic length of cooperative rearranging region for uniaxial drawn poly(ethylene terephthalate) films, <em>Polymer<\/em>, <strong>54<\/strong>(16), 4078-4084 (2013).  <a href=\"https:\/\/wp.me\/abo2xj-15o\"><em>https:\/\/wp.me\/abo2xj-15o<\/em><\/a><\/li><li>Yoshitomo Furushima, Kazuhiko Ishikiriyamaa, Yoshiyuki Ueno, Hiroyuki Sugaya, Analysis of the state of water in polyvinylpyrrolidone aqueous solutions using DSC method,  <em>Thermochimica Acta<\/em>, <strong>538<\/strong>, 43-47 (2012).<br><a href=\"https:\/\/wp.me\/abo2xj-154\"><em>https:\/\/wp.me\/abo2xj-154<\/em><\/a><\/li><li>K.Ishikiriyama, \u7e4a\u7dad\u3068\u5de5\u696d, <strong>65<\/strong>(11), 428(2009).  <a href=\"https:\/\/wp.me\/abo2xj-14d\"><em>https:\/\/wp.me\/abo2xj-14d<\/em><\/a> <\/li><li>Ichiro Hatta, Kana Nakanishi b, Kazuhiko Ishikiriyama , Thermal analysis of stratum corneum of hairless mouse with attention to phase transitions near 35 \u00b0C, <em>Thermochimica Acta<\/em>, <strong>431<\/strong>, 94-97 (2005). <a href=\"https:\/\/wp.me\/abo2xj-15p\"><em>https:\/\/wp.me\/abo2xj-15p<\/em><\/a><\/li><li>M.Todoki and K.Ishikiriyama, Melting Behavior of Nanosize Crysttal Part2  Melting Point of Polymer Crystals, <em>\u65e5\u672c\u30b4\u30e0\u5354\u4f1a\u8a8c<\/em>, <strong>76<\/strong>(7), 247-254 (2003).<br><a href=\"https:\/\/wp.me\/abo2xj-16J\"><em>https:\/\/wp.me\/abo2xj-16J<\/em><\/a><\/li><li>M.Todoki and K.Ishikiriyama, Melting Behavior of Nanosize Crysttal Part1 Thermodynamics Description of Melting Point of Ice,<em>\u65e5\u672c\u30b4\u30e0\u5354\u4f1a\u8a8c<\/em>, <strong>76<\/strong>(7), 240-246 (2003).<a href=\"https:\/\/wp.me\/abo2xj-16K\">https:\/\/wp.me\/abo2xj-16K<\/a><\/li><li> A. Boller, I. Okazaki, K. Ishikiriyama, G. Zhang and B. Wunderlich, Determination of Cell Asymmetry in Temperature Modulated DSC,<em> J. Thermal Analysis<\/em>, <strong>49<\/strong>, 1081-1088 (1997). <em> <a href=\"https:\/\/wp.me\/abo2xj-16Q\">https:\/\/wp.me\/abo2xj-16Q<\/a><\/em><\/li><li> B. Wunderlich, A. Boller, I. Okazaki, and K. Ishikiriyama, Heat Capacity Determination by Temperature-Modulated DSC and its Separation from Transition Effects, <em>Thermochim. Acta<\/em>, <strong>304\/305<\/strong>, 125-136 (1997).<br><a href=\"https:\/\/wp.me\/abo2xj-158\"><em>https:\/\/wp.me\/abo2xj-158<\/em><\/a><\/li><li> K. Ishikiriyama and B. Wunderlich, Cell Asymmetry Correction for Temperature Modulated Differential Scanning Calorimetry,<em> J. Thermal Analysis<\/em>, <strong>50<\/strong>, 337-346 (1997).  <a href=\"https:\/\/wp.me\/abo2xj-16N\"><em>https:\/\/wp.me\/abo2xj-16N<\/em><\/a><\/li><li> K. Ishikiriyama, A. Boller, and B. Wunderlich, Melting of Indium by Temperature-Modulated Differential Scanning Calorimetry, <em>J. Thermal Analysis<\/em>, <strong>50<\/strong>, 547-558 (1997).  <a href=\"https:\/\/wp.me\/abo2xj-16P\"><em>https:\/\/wp.me\/abo2xj-16P<\/em><\/a><\/li><li> K. Ishikiriyama and B. Wunderlich, Crystallization and Melting of Poly(oxyethylene) Analyzed by Temperature-Modulated Calorimetry, <em>J. Polymer Sci., Part B<\/em>, Polymer Phys., <strong>35<\/strong>, 1877-1886 (1997).  <br><a href=\"https:\/\/wp.me\/abo2xj-15g\"><em>https:\/\/wp.me\/abo2xj-15g<\/em><\/a><\/li><li> K. Ishikiriyama and B. Wunderlich, Melting of Poly(oxyethylene) Analyzed by Temperature-Modulated Calorimetry, <em>Macromolecules<\/em>, <strong>30<\/strong>, 4126-4131 (1997). \u3000<em><a href=\"https:\/\/wp.me\/abo2xj-15d\">https:\/\/wp.me\/abo2xj-15d<\/a><\/em><\/li><li> 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.  <\/li><li> 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, <strong>37<\/strong>, 27-44 (1998).  <a href=\"https:\/\/wp.me\/abo2xj-15l\"><em>https:\/\/wp.me\/abo2xj-15l<\/em><\/a><\/li><li> B. Wunderlich, I. Okazaki, K. Ishikiriyama, and A. Boller, Melting by Temperature-Modulated Calorimetry, <em>Thermochim. Acta.<\/em>, <strong>324<\/strong>, 77-85 (1998).\u3000<a href=\"https:\/\/wp.me\/abo2xj-141\"><em>https:\/\/wp.me\/abo2xj-141<\/em><\/a> <\/li><li> 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, <em>Thermochim. Acta<\/em>, <strong>330<\/strong>, 21-38 (1999).\u3000<a href=\"https:\/\/wp.me\/abo2xj-15n\"><em>https:\/\/wp.me\/abo2xj-15n<\/em><\/a><\/li><li> K. Ishikiriyama, M. Todoki, K. H. Min, S. Yonemori, and M. Noshiro, THERMOPOROSIMETRY  Pore size distribution measurements for microporous glass using differential scanning Calorimetry, <em>J. Thermal Analysis<\/em>, <strong>46<\/strong>, 1177 (1996).  <a href=\"https:\/\/wp.me\/abo2xj-16O\"><em>https:\/\/wp.me\/abo2xj-16O<\/em><\/a><\/li><li> K. Ishikiriyama and M. Todoki, Heat Capacity of Water in Poly(Methyl Methacrylate Hydrogel Membrane for an Artificial Kidney, <em>J. Polym. Sci. Part B Polymer Phys.<\/em>, <strong>33<\/strong>, 791 (1995).<br><em><a href=\"https:\/\/wp.me\/abo2xj-140\">https:\/\/wp.me\/abo2xj-140<\/a> <\/em><\/li><li> K. Ishikiriyama and M. Todoki, Evaluation of water in silica pores using differential scanning Calorimetry, <em>Thermochimica Acta<\/em>, <strong>256<\/strong>, 213 (1995). <a href=\"https:\/\/wp.me\/abo2xj-13Y\"><em>https:\/\/wp.me\/abo2xj-13Y<\/em><\/a><\/li><li> 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, <em>Thermochimica Acta<\/em>, <strong>267<\/strong>, 169 (1995). \u3000<a href=\"https:\/\/wp.me\/abo2xj-15j\"><em>https:\/\/wp.me\/abo2xj-15j<\/em><\/a>\u3000<\/li><li> 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, <em>J. Colloid Interface Sci.<\/em>, <strong>173<\/strong>, 419 (1995).\u3000<em><a href=\"https:\/\/wp.me\/abo2xj-15i\">https:\/\/wp.me\/abo2xj-15i<\/a>\u3000<\/em><\/li><li> K. Ishikiriyama and M. Todoki, Pore Size Distribution (PSD) Measurements of Silica Gels by Means of Differential Scanning Calorimetry II. Thermoporosimetry, <em>J. Colloid Interface Sci.<\/em>, <strong>171<\/strong>, 103 (1995).<br><a href=\"https:\/\/wp.me\/abo2xj-15k\"><em>https:\/\/wp.me\/abo2xj-15k<\/em><\/a><\/li><li> 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,<em> J. Colloid Interface Sci.<\/em>, <strong>171<\/strong>, 92 (1995).\u3000<a href=\"https:\/\/wp.me\/abo2xj-15h\"><em>https:\/\/wp.me\/abo2xj-15h<\/em><\/a><\/li><li> \u77f3\u5207\u5c71\uff0c\u5341\u6642\uff0c\u7530\u4e2d\uff0c\u5c0f\u6797\uff0c\u56fd\u53cb\uff0c<em>\u814e\u3068\u900f\u6790\u3000<strong>\u7b2c\uff13\uff14\u5dfb\u5225\u518a<\/strong><\/em>\uff0cp44-46 (1993)\uff0e(Japanese) <\/li><li>K.Ishikiriyama,Use of Melting Point Depression of Ice for Determination of Pore Size in Hollow Fiber Membranes for Artificial Kidney, <em>Netsu Sokutei<\/em>, <strong>18<\/strong>(4), 229-231(1991).\u3000<a href=\"https:\/\/wp.me\/abo2xj-16L\"><em>https:\/\/wp.me\/abo2xj-16L<\/em><\/a><\/li><li> A. Yamada-Nosaka, K. Ishikiriyama, M. Todoki and H. Tanzawa, 1H-NMR Studies on Water on Methacrylate Hydrogels. I,<em> J. Appl. Polym. Sci.<\/em>, <strong>39<\/strong>, 2443 (1990) . <a href=\"https:\/\/wp.me\/abo2xj-15q\"><em>https:\/\/wp.me\/abo2xj-15q<\/em><\/a><\/li><li>\u77f3\u5207\u5c71\u4e00\u5f66\uff0c\u5341\u6642\u3000\u7a14\uff0c\u201d \u7d30\u5b54\u5f84\u5206\u5e03\u6e2c\u5b9a\u3078\u306e\uff24\uff33C\u6cd5\u306e\u5fdc\u7528\uff08\u305d\u306e1\uff09\u201d, <em>Netsu Sokutei<\/em>, <strong>14<\/strong>\uff0c125 (1987).\u3000<a href=\"https:\/\/wp.me\/abo2xj-16M\"><em>https:\/\/wp.me\/abo2xj-16M<\/em><\/a><\/li><li> \u7247\u5c71\u771f\u4e00\u90ce\uff0c\u77f3\u5207\u5c71\u4e00\u5f66\uff0c\u5341\u6642\u7a14\uff0c\u201dDSC\u306b\u3088\u308b\u6bd4\u71b1\u5bb9\u91cf\u6e2c\u5b9a\u3000\u6211\u3005\u306e\u5de5\u592b\u201d\uff0c<em>Netsu Sokutei<\/em>, <strong>13<\/strong>, \uff1117 (1986).<br><\/li><\/ol>\n","protected":false},"excerpt":{"rendered":"<p>\u65e5\u672c\u5206\u6790\u5316\u5b66\u4f1a\u8a8c2021\u5e744\u6708\u53f7\u5dfb\u982d\u8a18\u4e8b. https:\/\/our.corestein.com\/wp-content\/uploads\/2021\/05\/\u3075\u3099\u3093\u305b\u304d2021\u5e744\u6708\u5dfb\u982d\u8a18\u4e8bp141.pdf K. Ishikir &hellip; <\/p>\n<p class=\"link-more\"><a href=\"https:\/\/our.corestein.com\/?p=4293\" class=\"more-link\"><span class=\"screen-reader-text\">&#8220;\u767a\u8868\u8ad6\u6587\u30ea\u30b9\u30c8&#8221; \u306e<\/span>\u7d9a\u304d\u3092\u8aad\u3080<\/a><\/p>\n","protected":false},"author":7,"featured_media":0,"comment_status":"open","ping_status":"open","sticky":false,"template":"","format":"standard","meta":{"_jetpack_newsletter_access":"","_jetpack_dont_email_post_to_subs":false,"_jetpack_newsletter_tier_id":0,"_jetpack_memberships_contains_paywalled_content":false,"_jetpack_feature_clip_id":0,"_jetpack_memberships_contains_paid_content":false,"footnotes":"","jetpack_post_was_ever_published":false},"categories":[25],"tags":[],"class_list":["post-4293","post","type-post","status-publish","format-standard","hentry","category-papers"],"jetpack_featured_media_url":"","jetpack_likes_enabled":true,"jetpack-related-posts":[{"id":4232,"url":"https:\/\/our.corestein.com\/?p=4232","url_meta":{"origin":4293,"position":0},"title":"\u30bf\u30df\u30fc\u304b\u3089\u306e\u30e1\u30fc\u30eb (Mail from 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