Akira Harada
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Explore the profile of Akira Harada including associated specialties, affiliations and a list of published articles.
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139
Citations
1433
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Recent Articles
11.
Saiki T, Harada A, Suekane H, Torisu T
Intern Med
. 2022 Dec;
62(17):2577-2578.
PMID: 36575019
No abstract available.
12.
Konishi S, Park J, Urakawa O, Osaki M, Yamaguchi H, Harada A, et al.
Soft Matter
. 2022 Sep;
18(38):7369-7379.
PMID: 36124981
Reversible cross-links by non-covalent bonds have been widely used to produce supramolecular hydrogels that are both tough and functional. While various supramolecular hydrogels with several kinds of reversible cross-links have...
13.
Harada A, Umeno J, Morisaki S, Saiki T, Taniguchi Y, Suzuki T, et al.
Nihon Shokakibyo Gakkai Zasshi
. 2022 Jul;
119(7):651-657.
PMID: 35811122
Chronic non-specific multiple ulcers of the small intestine is a disease condition postulated in Japan. It is an uncommon gastrointestinal disease that causes chronic anemia and hypoalbuminemia by causing numerous...
14.
Kimura T, Aoyama T, Nakahata M, Takashima Y, Tanaka M, Harada A, et al.
Soft Matter
. 2022 Jun;
18(26):4953-4962.
PMID: 35748314
Supramolecular hydrogels utilizing host-guest interactions (HG gels) exhibit large deformability and pronounced viscoelasticity. The inclusion complexes between β-cyclodextrin (host) and adamantane (guest) units on the water-soluble polymers form transient bonds....
15.
Jin C, Park J, Shirakawa H, Osaki M, Ikemoto Y, Yamaguchi H, et al.
Soft Matter
. 2022 Jun;
18(27):5027-5036.
PMID: 35695164
Polyurethane (PU) materials with movable crosslinking were prepared by a typical two-step synthetic process using an acetylated γ-cyclodextrin (TAcγCD) diol compound. The soft segment of PU is polytetrahydrofuran (PTHF), and...
16.
Zheng Y, Hashidzume A, Takashima Y, Yamaguchi H, Harada A
ACS Macro Lett
. 2022 May;
1(8):1083-1085.
PMID: 35607042
The interaction of polyacrylamide(pAAm)-based gel modified with benzyl (Bz) moiety (Bz()-gel, where denotes the mol % content of Bz moiety) with a pAAm-based gel possessing cyclodextrin (CD) moieties (αCD-gel, βCD-gel,...
17.
Nakahata M, Mori S, Takashima Y, Hashidzume A, Yamaguchi H, Harada A
ACS Macro Lett
. 2022 May;
3(4):337-340.
PMID: 35590743
The interaction between poly(acrylamide) gels carrying phenylboronic acid (PB gel) and catechol moieties (CAT gel) respectively is investigated. The PB gel forms an assembly with the CAT gel on a...
18.
Takashima Y, Uramatsu K, Jomori D, Harima A, Otsubo M, Yamaguchi H, et al.
ACS Macro Lett
. 2022 May;
2(5):384-387.
PMID: 35581843
Trimethylated cyclodextrins with a phosphine ligand and ruthenium (PCyRu-CDs) realize supramolecular polymerization catalysts for ring-opening metathesis polymerization (ROMP). Although PCyRu-βCD shows a low polymerization activity for 7-oxanorbornene dimethanol (7-ONorOH) in...
19.
Sugawara A, Asoh T, Takashima Y, Harada A, Uyama H
ACS Macro Lett
. 2022 May;
10(7):971-977.
PMID: 35549204
We developed a mechano-responsive hydrogel that is driven by the dissociation of a host-guest complex. The hydrogel comprised a thermoresponsive linear polymer with adamantane as a guest molecule in its...
20.
Sinawang G, Kobayashi Y, Osaki M, Takashima Y, Harada A, Yamaguchi H
RSC Adv
. 2022 May;
9(39):22295-22301.
PMID: 35519478
Supramolecular materials have received considerable attention due to their higher fracture energy and self-recovery capability compared to conventional chemically cross-linked materials. Herein, we focus on the mechanical properties and self-recovery...