Takaya Terashima
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Explore the profile of Takaya Terashima including associated specialties, affiliations and a list of published articles.
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Articles
33
Citations
244
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Recent Articles
1.
Horiike Y, Aoki H, Ouchi M, Terashima T
J Am Chem Soc
. 2025 Feb;
147(8):6727-6738.
PMID: 39950680
Herein, we report water-intercalated and humidity-responsive lamellar materials obtained from the self-assembly of sodium acrylate (ANa)/alkyl or oleyl acrylate (RA) random copolymers. The random copolymers efficiently absorbed water into the...
2.
Kanno R, Kono H, Ryoki A, Ouchi M, Terashima T
J Am Chem Soc
. 2024 Oct;
146(45):30848-30859.
PMID: 39404465
Herein, we report multicomponent self-assembly and self-sorting of polymer micelles in water using mixtures of an anionic random copolymer bearing sodium sulfonate and dodecyl groups and random copolymers carrying poly(ethylene...
3.
Sujita R, Aoki H, Takenaka M, Ouchi M, Terashima T
ACS Macro Lett
. 2024 May;
13(6):747-753.
PMID: 38815215
Herein, we report the water-assisted self-assembly of alternating copolymers bearing imidazolium cations and hydrophobic groups to create water-compatible and nanostructured materials. The copolymers efficiently absorbed water into the cationic segments...
4.
Ikami T, Aoki H, Terashima T
ACS Macro Lett
. 2024 Mar;
13(4):446-452.
PMID: 38547521
Microphase separation of random copolymers, as well as that of high χ-low block copolymers, is promising to construct sub-10-nm structures into materials. Herein, we designed statistical copolymers consisting of 2-hydroxyethyl...
5.
Koda Y, Terashima T, Ouchi M
ACS Macro Lett
. 2022 Jun;
8(11):1456-1460.
PMID: 35651175
Glycooligomers and glycopolymers (glycocompounds) play important roles in maintaining homeostasis in biological systems. Glycobiology is a burgeoning area in the elucidation of biological systems for which the molecular design of...
6.
Ito D, Ogura Y, Sawamoto M, Terashima T
ACS Macro Lett
. 2022 Jun;
7(8):997-1002.
PMID: 35650952
Acrylate-selective transesterification of methacrylate/acrylate copolymers with alcohols was developed for a site-selective postfunctionalization technique of polymers without using specific monomers. Importantly, a common methyl acrylate efficiently works as a selective...
7.
Matsumoto M, Sawamoto M, Terashima T
ACS Macro Lett
. 2022 Jun;
8(3):320-325.
PMID: 35650836
Here, we report orthogonal folding and self-assembly systems of amphiphilic/fluorous random block copolymers for double core and multicompartment micelles in water. For this, we developed the precision folding techniques of...
8.
Ommura Y, Imai S, Takenaka M, Ouchi M, Terashima T
ACS Macro Lett
. 2022 Jun;
9(3):426-430.
PMID: 35648547
Herein, we developed selective coupling and polymerization systems of folded polymer micelles via physical interaction in water. The polymer micelles serve as nanodomains to provide double core micelles, alternating necklace...
9.
Artar M, Souren E, Terashima T, Meijer E, Palmans A
ACS Macro Lett
. 2022 May;
4(10):1099-1103.
PMID: 35614811
A Ru(II)-based catalyst trapped within an amphiphilic, folded polymer is employed for the oxidation of secondary alcohols to their corresponding ketones using BuOOH as the oxidant. Under the applied catalytic...
10.
Koda Y, Terashima T, Sawamoto M
ACS Macro Lett
. 2022 May;
4(12):1366-1369.
PMID: 35614784
Poly[poly(ethylene glycol) methyl ether methacrylate]s [poly(PEGMA)s] sharply and reversibly exhibited lower critical solution temperature (LCST)-type phase separation in 2,3-perfluoropentane (2HPFP). The cloud points decreased from 52 to 41 °C with...