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Hideki Masuda

Explore the profile of Hideki Masuda including associated specialties, affiliations and a list of published articles. Areas
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Articles 163
Citations 857
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Recent Articles
1.
Endo S, Ozawa T, Inomata T, Masuda H
Yakugaku Zasshi . 2024 Jun; 144(6):643-650. PMID: 38825473
Inspired by the mechanism by which microorganisms utilize siderophores to ingest iron, four different Fe complexes of typical artificial siderophore ligands containing catecholate and/or hydroxamate groups, K[Fe-L], K[Fe-L], K[Fe-L], and...
2.
Kubo M, Nakane D, Funahashi Y, Ozawa T, Inomata T, Masuda H
Chemistry . 2024 Jan; 30(19):e202303955. PMID: 38268122
A Fe complex with NS-type tripod ligand, 1, reacts with O in CHOH to generate formaldehyde, which has been studied structurally, spectroscopically, and electrochemically. Complex 1 crystallizes as an octahedral...
3.
Inomata T, Endo S, Ido H, Miyamoto M, Ichikawa H, Sugita R, et al.
Langmuir . 2024 Jan; 40(5):2632-2645. PMID: 38252152
Four Fe complexes of typical artificial siderophore ligands containing catecholate and/or hydroxamate groups of tricatecholate, biscatecholate-monohydroxamate, monocatecholate-bishydroxamate, and trihydroxamate type artificial siderophores (K[], K[], K[], and []) were modified on...
4.
Kajita Y, Kubo M, Arii H, Ishikawa S, Saito Y, Wasada-Tsutsui Y, et al.
Molecules . 2024 Jan; 29(1). PMID: 38202788
The iron(II) complex with -1,3,5-tris(benzylamino)cyclohexane (BnCY) () has been synthesized and characterized, which reacted with dioxygen to form the peroxo complex in acetone at -60 °C. On the basis of...
5.
Yanagishita T, Kumagai N, Masuda H
RSC Adv . 2023 Nov; 13(47):33231-33241. PMID: 37964907
There is much interest in UV nanoimprinting as a fabrication method for various functional devices because of its suitability for efficient fine patterning. To form patterns on opaque substrates by...
6.
Inomata T, Endo S, Ido H, Mori R, Iwai Y, Ozawa T, et al.
Inorg Chem . 2023 Sep; 62(40):16362-16377. PMID: 37738382
Two hybrid-type artificial siderophore ligands containing both catecholate and hydroxamate groups as iron-capturing sites, bis(2,3-dihydroxybenzamidepropyl)mono[2-propyl]aminomethane () and mono(2,3-dihydroxybenzamide-propyl)bis[2-propyl]aminomethane (, were designed and synthesized. Iron(III) complexes, K[] and K[], were prepared...
7.
Arii H, Nakane D, Nakao K, Masuda H, Kawashima T
Org Lett . 2023 Jul; 25(29):5416-5420. PMID: 37449923
We investigated the dehydrogenative annulation of silylated 1-indole derivatives with alkynes to synthesize a silole-fused indole. The addition of the generated silylium ion to alkynes was followed by the sila-Friedel-Crafts...
8.
Linklater D, Vailionis A, Ryu M, Kamegaki S, Morikawa J, Mu H, et al.
Nanomaterials (Basel) . 2023 Jun; 13(12). PMID: 37368324
Herein, we give an overview of several less explored structural and optical characterization techniques useful for biomaterials. New insights into the structure of natural fibers such as spider silk can...
9.
Yanagishita T, Otomo R, Masuda H
RSC Adv . 2023 Jun; 13(24):16549-16558. PMID: 37274395
Membrane emulsification using anodic porous alumina is an effective method for preparing monodisperse droplets with controlled sizes. In this study, membrane emulsification using anodic porous alumina was applied to the...
10.
Kokubo Y, Tsuzuki K, Sugiura H, Yomura S, Wasada-Tsutsui Y, Ozawa T, et al.
Inorg Chem . 2023 Mar; 62(14):5320-5333. PMID: 36972224
A novel dinitrogen-dichromium complex, [{Cr()}(μ-N)] (), has been prepared from reaction of CrCl with a lithiated triamidoamine ligand () under dinitrogen. The X-ray crystal structure analysis of revealed that it...