Yasuhiro Takabayashi
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Explore the profile of Yasuhiro Takabayashi including associated specialties, affiliations and a list of published articles.
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24
Citations
180
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Recent Articles
1.
Zhang Z, Pan W, Utsumi M, Yamamoto Y, Goto H, Kondo R, et al.
Inorg Chem
. 2024 Oct;
63(45):21531-21540.
PMID: 39472105
The structural and superconducting properties of the Bi-based superconductor BiRh(SeS) were investigated over a wide pressure range. BiRhSe is a superconductor with a superconducting transition temperature, , of less than...
2.
Okur H, Colman R, Takabayashi Y, Jeglic P, Ohishi Y, Kato K, et al.
Chem Sci
. 2024 Sep;
PMID: 39263659
Dynamical fluctuations of the elastic strain in strongly correlated systems are known to affect the onset of metal-to-insulator or superconducting transitions. Here we report their effect on the properties of...
3.
Eguchi R, Sekhar H, Kimura K, Masai H, Happo N, Ikeda M, et al.
ACS Omega
. 2024 May;
9(19):21287-21297.
PMID: 38764676
The local structure of the two-dimensional van der Waals material, FeGeTe, which exhibits unique structural/magnetic phase transitions, was investigated by Te K-edge extended X-ray absorption fine structure (EXAFS) and Te...
4.
Zhang Z, Ikeda M, Utsumi M, Yamamoto Y, Goto H, Eguchi R, et al.
Inorg Chem
. 2024 Jan;
63(5):2553-2561.
PMID: 38253512
The structural and superconducting properties of the Bi-based compound BiPdSe were investigated over a wide pressure range. The prepared BiPdSe sample was a superconductor with a superconducting transition temperature, ,...
5.
Nagaoka A, Kimura K, Ang A, Takabayashi Y, Yoshino K, Sun Q, et al.
J Am Chem Soc
. 2023 May;
145(16):9191-9197.
PMID: 37125455
Point defect chemistry strongly affects the fundamental properties of materials and has a decisive impact on device performance. The Group-V dopant is prominent acceptor species with high hole concentration in...
6.
Taguchi T, Wang Y, Yang X, Li H, Takabayashi Y, Hayashi K, et al.
Inorg Chem
. 2021 Feb;
60(6):3585-3592.
PMID: 33615782
We investigated the pressure dependence of electric transport in a superconducting sample, BaNaTiSbO, to complete the phase diagram of superconducting transition temperature () against pressure (). This superconducting sample exhibits...
7.
Okamoto H, Hamao S, Eguchi R, Goto H, Takabayashi Y, Yen P, et al.
Sci Rep
. 2019 Mar;
9(1):4009.
PMID: 30850618
The [10]phenacene and [11]phenacene molecules have been synthesized using a simple repetition of Wittig reactions followed by photocyclization. Sufficient amounts of [10]phenacene and [11]phenacene were obtained, and thin-film FETs using...
8.
Takabayashi Y, Menelaou M, Tamura H, Takemori N, Koretsune T, Stefancic A, et al.
Nat Chem
. 2017 Jun;
9(7):635-643.
PMID: 28644474
Molecular solids with cooperative electronic properties based purely on π electrons from carbon atoms offer a fertile ground in the search for exotic states of matter, including unconventional superconductivity and...
9.
Takabayashi Y, Prassides K
Philos Trans A Math Phys Eng Sci
. 2016 Aug;
374(2076).
PMID: 27501971
A3C60 molecular superconductors share a common electronic phase diagram with unconventional high-temperature superconductors such as the cuprates: superconductivity emerges from an antiferromagnetic strongly correlated Mott-insulating state upon tuning a parameter...
10.
Zadik R, Takabayashi Y, Klupp G, Colman R, Ganin A, Potocnik A, et al.
Sci Adv
. 2015 Nov;
1(3):e1500059.
PMID: 26601168
Understanding the relationship between the superconducting, the neighboring insulating, and the normal metallic state above T c is a major challenge for all unconventional superconductors. The molecular A3C60 fulleride superconductors...