Rchr
J-GLOBAL ID:201601019347405325
Update date: Nov. 12, 2024
YOSHIOKA Taiyo
ヨシオカ タイヨウ | YOSHIOKA Taiyo
Affiliation and department:
Job title:
Principal researcher
Research field (1):
Polymer materials
Research keywords (7):
physical property of fibers
, polymer science
, fiber structure
, silk
, nanofiber
, X-ray structural analysis
, hierarchical structure
Research theme for competitive and other funds (7):
- 2023 - 2026 Evaluation of potentiality of silk nanofibrils as nano-reinforcing materials and development of application technology
- 2022 - 2026 Challenge for producing strong and tough regenerated-silk fibers by inducing the hierarchical fibrillar structure
- 2021 - 2024 Study on the fundamental moleculr science responsible for the diversity of hierarchical structures and physical properties of silks
- 2018 - 2021 Fabrication of high-toughness silk-fibers from regenerated silk proteins
- 2016 - 2017 Fabrication of High Toughness Silk Materials As Sustainable Resources
- 2012 - 2015 Challenge for the Production of Ultra-high-modulus and high-strength Nylons by the Utilization of Newly-Discovered High-Temperature Phase Transition Phenomenon
- 2012 - 2014 Fabrication of extended-chain crystal nanofibers by electrospinning technique
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Papers (68):
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Yoko Takasu, Nobuto Yamada, Katsura Kojima, Masatoshi Iga, Fumiko Yukuhiro, Tetsuya Iizuka, Taiyo Yoshioka. Fibroin heavy chain gene replacement with a highly ordered synthetic repeat sequence in Bombyx mori. Insect biochemistry and molecular biology. 2023. 104002-104002
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Hidetoshi Teramoto, Katsura Kojima, Masatoshi Iga, Taiyo Yoshioka. Unique Material Properties of Bombyx mori Silk Fiber Incorporated with 3-Azidotyrosine. Biomacromolecules. 2023
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Taiyo Yoshioka, Tsunenori Kameda, Manfred Burghammer, Christian Riekel. Mesoscale Confinement in Bagworm Silk: A Hidden Structural Organization. Nano Letters. 2023
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Nobuto Yamada, Taiyo Yoshioka, Aki Sagisaka, Tsunenori Kameda, Ryoko T. Ichiki. Silk-assisted hatching of the Japanese bagworm moth Eumeta variegata (Lepidoptera: Psychidae). Entomological Science. 2022. 25. 4. e12528
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Hiroko Yamamoto, Taiyo Yoshioka, Kenichi Funaki, Hiroyasu Masunaga, Eamor M. Woo, Kohji Tashiro. Synchrotron X-ray-analyzed inner structure of polyethylene spherulites and atomistic simulation of a trigger of the lamellar twisting phenomenon. Polymer Journal. 2022
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MISC (103):
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吉岡太陽, 和泉隆誠, 横井翔, 坪田拓也, 瀬筒秀樹. クスサンシルクのアミノ酸配列から予測される力学応答挙動と実際の力学特性. 蚕糸・昆虫機能利用学術講演会・日本蚕糸学会大会講演要旨集. 2024. 94th
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Taiyo YOSHIOKA, Tsunenori KAMEDA, Manfred Burghammer, Christian Riekel. Probing the structure of bagworm silk with scanning X-ray nanodiffraction. ESRF (European Synchrotron Radiation Facility) Spotlight on Science. 2023
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Taiyo YOSHIOKA. 100 years from now, will humans be able to join a kind of silken animals?. Sen'i Gakkaishi. 2023. 79. 1. 7-8
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Taiyo YOSHIOKA. Hierarchical structure of high-toughness silks: From amino acid sequence to fibril structure. J. Text. Mach. Soc. Jpn. 2021. 74. 11. 604-610
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Taiyo YOSHIOKA. Study on Structural Origin of High Toughness in Silks. J. Soc. Fiber Sci. Technol. Jap. 2020. 76. 9. 372-376
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Books (7):
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延伸による高分子の構造と物性制御
S&T Publishing Inc. 2022
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Science of Bombyx mori silkworms
Asakura Publishing Co., Ltd. 2020
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新材料・新素材シリーズ 高機能性繊維の最前線 ~医療, 介護, ヘルスケアへの応用~
シーエムシー出版(株) 2014
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高分子の結晶制御技術と応用
シーエムシー出版(株) 2012
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高分子材料の外観不良の原因分析と対策
情報機構 (株) 2012
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Lectures and oral presentations (32):
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The Importance of SAXS Analysis for Microscopical Biomimetics in the Fabrication of Silk-based Sustainable Products
(19th International Small-Angle Scattering Conference (SAS2024), Taipei TAIWAN 2024)
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Microscopical Biomimetics of Silks -The Importance of Hierarchical Structure Control in the Fabrication of Silk-based Products-
(73rd Symposium on Macromolecules 2024)
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Silk, A Natural Material with High Expectations in Various Fields for Sustainable Society: (2) Materials Development Based on Hierarchical Structure Control of Silk Proteins
(Lecture in Life Engineering Course, Tokyo Institute of Technology 2024)
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Silk, A Natural Material with Promising Potential in Various Fields for Sustainable Society: (1) Exploring the Hierarchical Structure of Silk, Linking Primary Structre with Mechanical Properties
(Lecture in Life Engineering Course, Tokyo Institute of Technology 2024)
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Study on the hierarchical structure of silks that connects the primary structure and mehcanical properties
(The 8th Polymer Symposium (organized by KOBUNSHI-GAKKAI KANTO-SHIBU, KITAKANTO-CHIKU) 2024)
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Professional career (1):
- Dr of Eng. (Kyoto University)
Work history (6):
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