Rchr
J-GLOBAL ID:200901009267987683
Update date: Apr. 01, 2024
Hashimoto Masato
ハシモト マサト | Hashimoto Masato
Affiliation and department:
Job title:
Associate Professer
Homepage URL (1):
http://senzai07.poly.kit.ac.jp/~hashima/
Research field (1):
Bio-, chemical, and soft-matter physics
Research keywords (4):
結晶成長
, 高分子の高次構造
, パターン形成
, 固体物性
Research theme for competitive and other funds (5):
- 2005 - 2006 高分子の融液結晶化で発生する負圧・キャビテーションの物性研究への応用
- 2002 - 2004 STUDY ON PHASE TRANSITION AND CRITICAL PHENOMENA IN POLYMER CRYSTALS BASED ON LIGHT-HEATING MODULATED DTA AND HIGH PRESSURE MEASUREMENT
- 2000 - 2001 STUDY ON CRITICAL PHENOMENA IN POLYMER CRYSTALS BASED ON LIGHT-HEATING MODULATED TEMPERATURE DIFFERENTIAL SCANNING CALORIMETRY UNDER HIGH PRESSURE
- 1997 - 1998 ANALYSIS FOR MOLECULAR MECHANISN OF PHASE TRANSITION AND CRITICAL PHENOMENA IN POLYMER CRYSTALS
- 1996 - 1996 成長過程における高分子結晶のモルフォロジーの定量的解析
Papers (42):
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Tomoko Mizuguchi, Naoto Fukushima, Takashi Aoki, Susumu Fujiwara, Masato Hashimoto. The study on the stability of DNA structure by steered molecular dynamics simulations. Journal of Advanced Simulation in Science and Engineering. 2022. 9. 1. 160-169
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Masato Hashimoto, Susumu Fujiwara, Nan Lin, Atsushi Doi, Nozomi Katayama, Junki Ootani, Tomoko Mizuguchi. Cavitation in thin films of amorphous polymers from the static melt induced by thermal treatment. Polymer Journal. 2019. 51. 6. 569-577
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Susumu Fujiwara, Yoshiki Iida, Takehide Tsutsui, Tomoko Mizuguchi, Masato Hashimoto, Yuichi Tamura, Hiroaki Nakamura. Dissipative particle dynamics simulation for self-assembly of symmetric bolaamphiphilic molecules in solution. Plasma and Fusion Research. 2018. 13
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Susumu Fujiwara, Yu Takahashi, Hiroki Ikebe, Tomoko Mizuguchi, Masato Hashimoto, Yuichi Tamura, Hiroaki Nakamura, Ritoku Horiuchi. Dissipative particle dynamics simulation of self-assembly in a bolaamphiphilic solution. Plasma and Fusion Research. 2016. 11. 1
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Masato Hashimoto, Junko O'Ishi, Sayoko Moriya, Susumu Fujiwara. Melt memory of a spherulite nucleus formed through a seeding process in the crystal growth of isotactic polystyrene. Polymer Journal. 2015. 47. 7. 481-486
more...
MISC (36):
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荻野涼子, 名部哲史, 橋本雅人, 水口朋子, 藤原進. 高分子の球晶成長に及ぼす融解記憶効果. 高分子学会予稿集(CD-ROM). 2018. 67. 1
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藤原進, 飯田祥希, 筒井岳英, 水口朋子, 橋本雅人. 対称双頭型両親媒性溶液中における自己会合の散逸粒子動力学シミュレーション. 高分子学会予稿集(CD-ROM). 2018. 67. 1
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大森正博, 橋本雅人, 藤原進, 水口朋子. 電界下における高分子の結晶化過程. 高分子学会予稿集(CD-ROM). 2018. 67. 2
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LI Haolun, 藤原進, 水口朋子, 橋本雅人, 中村浩章, 中村浩章, 安永卓生, 中田彩子, 宮崎剛, 大塚教雄, et al. トリチウムのヘリウム3への壊変によるポリエチレンの構造変化に関する分子動力学シミュレーション. 高分子学会予稿集(CD-ROM). 2018. 67. 2
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石田充, 藤原進, 水口朋子, 橋本雅人. 帯電デンドリマー/線状高分子電解質複合体化に及ぼす線状高分子電解質の剛直性の効果. 高分子学会予稿集(CD-ROM). 2018. 67. 2
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Lectures and oral presentations (23):
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Morphology generated during melting and recrystallization process of polymer spherulites
(72nd Symposium on Macromolecules 2023)
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Shell Structure Generated during the Melting and Recrystallization Process of Polymer Spherulite.
(13th SPSJ International Polymer Conference 2023)
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Morphology generated during melting and recrystallization process of polymer spherulites
(72nd SPSJ Annual Meeting 2023)
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粗視化モデルを用いたタンパク質フォールディングの初期核に関する研究
(日本物理学会講演概要集(CD-ROM) 2018)
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静止融液状態における高分子薄膜中で熱処理によって引き起こされるキャビテーション
(繊維学会予稿集 2018)
more...
Education (3):
- 1989 - 1994 京都大学大学院 理学研究科 物理学第一専攻 博士課程
- 1987 - 1989 Kyoto University
- 1982 - 1987 Kyoto University Faculty of Science
Professional career (1):
- Doctor(Science) (Kyoto University)
Work history (9):
- 2015/04 - 現在 Kyoto Institute of Technology
- 2013/07 - 2015/03 Kyoto Institute of Technology Graduate School of Science and Technology
- 2011/04 - 2014/03 Shiga Junior College Department of Human Environmental Sciences
- 2007/04 - 2013/06 Kyoto Institute of Technology Graduate School of Science and Technology
- 2008/10 - 2009/03 Shiga Junior College Department of Human Environmental Sciences
- 2007/10 - 2008/03 滋賀女子短期大学 生活学科 非常勤講師
- 2006/04 - 2007/03 Kyoto Institute of Technology Graduate School of Science and Technology
- 1994/12 - 2006/03 Kyoto Institute of Technology
- 1990/10 - 1994/03 大阪女子大学 学芸学部 理学科 非常勤講師
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Association Membership(s) (4):
繊維学会
, 日本物理学会
, 日本顕微鏡学会
, 高分子学会
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