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Hiroshi Kageyama

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Articles 152
Citations 789
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Recent Articles
11.
Kageyama H
Surg Neurol Int . 2024 Aug; 15:250. PMID: 39108383
Background: Malignant melanotic nerve sheath tumors (MMNSTs) are relatively rare, comprising <1% of all neoplastic peripheral nerve lesions. Here, we describe a 79-year-old male who presented with atypical magnetic resonance...
12.
Kato D, Suzuki H, Abe R, Kageyama H
Chem Sci . 2024 Aug; 15(30):11719-11736. PMID: 39092126
The band structure offers fundamental information on electronic properties of solid state materials, and hence it is crucial for solid state chemists to understand and predict the relationship between the...
13.
Gabov A, Kato D, Ubukata H, Aso R, Kakudou N, Fujita K, et al.
Chem Sci . 2024 Aug; 15(30):11856-11864. PMID: 39092095
In extended solid-state materials, the manipulation of chemical bonds through redox reactions often leads to the emergence of interesting properties, such as unconventional superconductivity, which can be achieved by adjusting...
14.
Kageyama H
Cureus . 2024 Jun; 16(5):e60546. PMID: 38887326
Hypertrophic pachymeningitis (HP) is a rare inflammatory disease of the central nervous system. It typically manifests in the cranium; cases involving the spinal cord are rare (8.6%). This report includes...
15.
Sukmana N, Sugiarto , Shinogi J, Minato T, Kojima T, Fujibayashi M, et al.
Inorg Chem . 2024 May; 63(22):10207-10220. PMID: 38767574
We prepared polyoxomolybdates with methylammonium countercations from methylammonium monomolybdate, (CHNH)[MoO], through two dehydrative condensation methods, acidifying in the aqueous solution and solid-state heating. Discrete (CHNH)[MoO(OH)(HO)], polymeric ((CHNH)[MoO(HO)]), and polymeric ((CHNH)[γ-MoO])...
16.
Otake Y, Tezuka F, Yamashita K, Morimoto M, Sugiura K, Takeuchi M, et al.
J Med Invest . 2024 May; 71(1.2):179-183. PMID: 38735718
Osteoporotic vertebral fracture (OVF) is common in the elderly population. In this report, we describe a case with radiculopathy due to foraminal stenosis caused by OVF in a very elderly...
17.
Sasahara Y, Terada R, Ubukata H, Asahi M, Kato D, Tsumori T, et al.
J Am Chem Soc . 2024 Apr; 146(17):11694-11701. PMID: 38631694
Perovskite oxyhydrides have attracted recent attention due to their intriguing properties such as ionic conductivity and catalysis, but their repertoire is still restricted compared to perovskite oxynitrides and oxyfluorides. Historically,...
18.
Wang Y, Fu P, Takatsu H, Tassel C, Hayashi N, Cao J, et al.
J Am Chem Soc . 2024 Mar; 146(12):8320-8326. PMID: 38489763
One-dimensional (1D) Heisenberg antiferromagnets are of great interest due to their intriguing quantum phenomena. However, the experimental realization of such systems with large spin remains challenging because even weak interchain...
19.
Ding F, Doi A, Ogawa T, Ubukata H, Zhu T, Kato D, et al.
Angew Chem Int Ed Engl . 2024 Feb; 63(15):e202401779. PMID: 38363076
The LiMX compounds (M=Sc, Y, In; X=Cl, Br) are known as promising ionic conductors due to their compatibility with typical metal oxide cathode materials. In this study, we have successfully...
20.
Fogh E, Nayak M, Prokhnenko O, Bartkowiak M, Munakata K, Soh J, et al.
Nat Commun . 2024 Jan; 15(1):442. PMID: 38200029
In quantum magnetic materials, ordered phases induced by an applied magnetic field can be described as the Bose-Einstein condensation (BEC) of magnon excitations. In the strongly frustrated system SrCu(BO), no...