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The Takai Team Profile
The Takai Team

@TakaiTeam

Followers
116
Following
130
Media
4
Statuses
47

Tsukuba, Ibaraki (Japan)
Joined January 2023
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@J_A_C_S
J. Am. Chem. Soc.
7 days
Autonomous Switching of Self-Propelled Motion Modes of Hinokitiol-Fueled Elastomer Matrices | Journal of the American Chemical Society
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pubs.acs.org
Programmable self-propelled motion underpins essential biological functions and serves as a powerful inspiration in the design of dynamic synthetic materials. While significant progress has been made...
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@TakaiTeam
The Takai Team
7 days
A landmark molecule “hinokitiol”, first isolated by Prof. Tetsuo Nozoe, swims spontaneously on water—and when mixed with polymers, it exhibits rhythmic self-propelled motion. A step toward molecular design for macroscopic autonomous systems! https://t.co/ZvlLUNxhQo @J_A_C_S
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pubs.acs.org
Programmable self-propelled motion underpins essential biological functions and serves as a powerful inspiration in the design of dynamic synthetic materials. While significant progress has been made...
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@TakaiTeam
The Takai Team
7 days
1930年代に野副 鉄男先生がヒノキから抽出した七員環芳香族化合物“ヒノキチオール”を水に浮かべると自発的に動き出し、さらにポリマーと混ぜることでリズム運動も発現することを見出しました。マクロな自己駆動性を分子化学的に制御する試みです。 https://t.co/ZvlLUNxhQo @J_A_C_S
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pubs.acs.org
Programmable self-propelled motion underpins essential biological functions and serves as a powerful inspiration in the design of dynamic synthetic materials. While significant progress has been made...
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@mesohierarchy_e
Materials Science of Meso-Hierarchy
7 days
[Publication] TAKAI(C01) et al. have published their research on a self-organized hinokitiol–polymer system that exhibits macroscopic autonomous oscillations through molecular design in J. Am. Chem. Soc. https://t.co/Rzd89pDDmb @TakaiTeam
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pubs.acs.org
Programmable self-propelled motion underpins essential biological functions and serves as a powerful inspiration in the design of dynamic synthetic materials. While significant progress has been made...
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@mesohierarchy
メゾヒエラルキーの物質科学【学術変革領域研究(A)】
7 days
【メゾヒエ論文掲載】 高井(C01)らによる,ヒノキチオール/ポリマー系の自己組織化構造のデザインによりマクロな自律振動運動を実現した研究成果がJ. Am. Chem. Soc.に掲載されました。 https://t.co/Ra54Oc8p2k @TakaiTeam
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pubs.acs.org
Programmable self-propelled motion underpins essential biological functions and serves as a powerful inspiration in the design of dynamic synthetic materials. While significant progress has been made...
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@yotaro_dba
yotaro_k
3 months
誕生日に合わせて論文が出版されました https://t.co/XhwwCijFHK 今回の研究はかなり難産だったこともあり、特別な思い入れがあります。 分子性ガラス材料について、分子構造に基づいた分子集合体構造と光学物性の関係にここまで踏み込めたのは、自分なりに学術的価値のある成果ではないかと感じます
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pubs.acs.org
We reported that C8[12]DBA, a C3-symmetric hexadecahydrotribenzo[12]annulene ([12]DBA) with a pore surrounded by three −C≡C– bonds, forms a stable molecular glass during cooling from the liquid state...
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@mesohierarchy_e
Materials Science of Meso-Hierarchy
4 months
[Supplementary Cover] The work by TAKAI (C01), HIRAI (A03), FUJITA (B01), UJI-I (A03), HARANO (A01) et al. (JACS, 2025, 147, 23528-23535) was selected as Supplementary Cover in J. Am. Chem. Soc. https://t.co/VRNIoZccOf @J_A_C_S
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@TakaiTeam
The Takai Team
5 months
Huge congratulations to Lara! 🎉 Truly well-deserved. Thank you to @ISMSC2025 and @tnkns for the opportunity.
@mesohierarchy
メゾヒエラルキーの物質科学【学術変革領域研究(A)】
5 months
【メゾヒエ若手会受賞・ISMSCその3】 高井(C01)グループのLara Rae Holsteinさん (NIMS/筑波大学)がISMSC2025においてResponsive Materials Poster Awardを受賞しました。おめでとうございます! @TakaiTeam @tnkns #ISMSC2025
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@yuukiwomanabu
有機化学を学ぶ人
5 months
東北大、兼RIKEN、瀧宮和男先生。ペロピレンとその誘導体の合成。こういう論文がたくさんでると良いですね。 #学ぶの論文紹介 Synthesis of Parent Peropyrene and Its Derivatization | Organic Letters
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pubs.acs.org
We have established a practical and scalable (>1 g) synthesis of peropyrene, dibenzo[cd,lm]perylene, from easily accessible 2,3-dihydro-1H-phenalen-1-one, which was first dimerized via the reductive...
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@mesohierarchy_e
Materials Science of Meso-Hierarchy
5 months
[Publication] ISHII(C03), TAKAI(C01) et al. have published their research about structural and thermodynamics properties of hydrogen-bonded C3-symmetrical hexadehydrotribenzo[12]annulene derivative in J. Am. Chem. Soc. @SMI_Lab_KU @TakaiTeam https://t.co/qPzdsJUSUb
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pubs.acs.org
The C3-symmetric hexadehydrotribenzo[12]annulene ([12]DBA) derivative (1a) with three tetradecylamide (−NHCOC14H29) chains capable of hydrogen-bonding interaction formed either a two-dimensional...
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@TakaiTeam
The Takai Team
5 months
RT @nagata_yuuya: I am pleased to share that I have assumed the position of Group Leader / Managing Researcher of the Autonomous Polymer De…
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@J_A_C_S
J. Am. Chem. Soc.
5 months
Accessing a Hidden Pathway to Supramolecular Toroid through Vibrational Strong Coupling | Journal of the American Chemical Society
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pubs.acs.org
Control over specific intermolecular interactions is crucial to the formation of unique supramolecular assemblies. Recently, vibrational strong coupling (VSC) has emerged as a new tool for manipula...
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@yotaro_dba
yotaro_k
5 months
博士の研究がJACSに載りました。 三回対称性デヒドロベンゾアヌレンの分子間相互作用を深く検討することで、 水素結合様式の違いによる多型制御を実現しました。 ぜひご覧ください。 https://t.co/U8GRfmw6Jv
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pubs.acs.org
The C3-symmetric hexadehydrotribenzo[12]annulene ([12]DBA) derivative (1a) with three tetradecylamide (−NHCOC14H29) chains capable of hydrogen-bonding interaction formed either a two-dimensional...
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@mesohierarchy_e
Materials Science of Meso-Hierarchy
5 months
The final day of #ISMSC2025 Kyoto, we are pleased to report very significant results of the collaborative research of the Meso-Hierarchy group, just appeared in JACS. "Accessing a Hidden Pathway to Supramolecular Toroid through Vibrational Strong Coupling" https://t.co/JnyXoi3MgO
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pubs.acs.org
Control over specific intermolecular interactions is crucial to the formation of unique supramolecular assemblies. Recently, vibrational strong coupling (VSC) has emerged as a new tool for manipula...
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@mesohierarchy
メゾヒエラルキーの物質科学【学術変革領域研究(A)】
5 months
【メゾヒエ論文掲載】 高井(C01)、平井(A03)、藤田(B01)、雲林院(A03)、原野(A01)らによる、振動強結合による超分子集合体の創出に関する研究がJ. Am. Chem. Soc.に掲載されました。合成、強結合、理論、観察が見事に協働した領域内共同研究成果です! https://t.co/HRlXoV79Tb @TakaiTeam @khng1980
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pubs.acs.org
Control over specific intermolecular interactions is crucial to the formation of unique supramolecular assemblies. Recently, vibrational strong coupling (VSC) has emerged as a new tool for manipula...
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@TakaiTeam
The Takai Team
5 months
It is exciting that our new paper has been published. I am also personally pleased to be a co-corresponding author with a high school alumnus for the first time! https://t.co/aa68qcSRjU #SupramolecularPolymer #VibrationalStrongCoupling #県立千葉
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pubs.acs.org
Control over specific intermolecular interactions is crucial to the formation of unique supramolecular assemblies. Recently, vibrational strong coupling (VSC) has emerged as a new tool for manipula...
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@YDChem2022
Yuya Domoto
7 months
東大でナノクラスターの結晶を見つけてきてくれた中川くんと、群馬でさらに展開してくれている鶴見くん(M2)がco-first authorです。 本論文はNIMS連携拠点推進制度を利用した成果であり、また理研・足立さんと初の共著です!
@YDChem2022
Yuya Domoto
7 months
アセチレン協働配位を応用した銀ナノクラスターの自己集合に関する論文が、ChemistryEurope @ChemistryEur に掲載されました!オープンアクセスです。 https://t.co/LBsRHwlHO6
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@khng1980
Koji Harano 原野 幸治
1 year
Just issued: "Reduction-Induced Self-Propelled Oscillatory Motion of Perylenediimides on Water" Angew. Chem. Int. Ed. 63, e202410671 (2024). with Dr. Atsuro Takai of NIMS @TakaiTeam @mesohierarchy_e https://t.co/sOPivmHzo8
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onlinelibrary.wiley.com
Centimeter-scale autonomous oscillatory motion was achieved upon the reduction of a perylenediimide disk at the solid-water interface. This redox-activated, self-propelled system can be modulated...
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