Satoshi Ohhashi
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Explore the profile of Satoshi Ohhashi including associated specialties, affiliations and a list of published articles.
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6
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5
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Recent Articles
1.
Uryu H, Yamada T, Kitahara K, Singh A, Iwasaki Y, Kimura K, et al.
Adv Sci (Weinh)
. 2023 Nov;
11(1):e2304546.
PMID: 37964402
Since the discovery of the quasicrystal, approximately 100 stable quasicrystals are identified. To date, the existence of quasicrystals is verified using transmission electron microscopy; however, this technique requires significantly more...
2.
Aida T, Shionoya A, Nonaka H, Hayami K, Uchiyama H, Nagamori M, et al.
Sensors (Basel)
. 2022 Apr;
22(7).
PMID: 35408296
(1) Background: When measuring anaerobic work threshold (AT), the conventional V-slope method includes the subjectivity of the examiner, which cannot be eliminated completely. Therefore, we implemented an engineering method using...
3.
Takagiwa Y, Maeda R, Ohhashi S, Tsai A
Materials (Basel)
. 2021 Sep;
14(18).
PMID: 34576461
Icosahedral Al-Cu-Fe quasicrystal (QC) shows moderate electrical conductivity and low thermal conductivity, and both p- and n-type conduction can be controlled by tuning the sample composition, making it potentially suited...
4.
Structural-transition-driven antiferromagnetic to spin-glass transition in Cd-Mg-Tb 1/1 approximants
Labib F, Okuyama D, Fujita N, Yamada T, Ohhashi S, Morikawa D, et al.
J Phys Condens Matter
. 2020 Jul;
32(48).
PMID: 32707571
The magnetic susceptibility of the 1/1 approximants to icosahedral quasicrystals in a series of CdMgTb(= 5, 10, 15, 20) alloys was investigated in detail. The occurrence of antiferromagnetic (AFM) to...
5.
Labib F, Okuyama D, Fujita N, Yamada T, Ohhashi S, Sato T, et al.
J Phys Condens Matter
. 2020 May;
32(41).
PMID: 32408292
A systematic investigation has been performed to elucidate effects of rare earth type and structural complexity on magnetic properties of icosahedral quasicrystal (iQC) and their cubic approximants (APs) in the...
6.
Pay Gomez C, Ohhashi S, Yamamoto A, Tsai A
Inorg Chem
. 2008 Aug;
47(18):8258-66.
PMID: 18702481
The structures of three quasicrystal approximant phases in the TM-Mg-Zn (TM = Hf, Zr, Ti) systems with the analyzed compositions Hf5Mg18Zn77, Zr5Mg18Zn77, and Ti5.5Mg17.5Zn77 have been synthesized, and their structures...